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The Front page of a British newspaper, The Telegraph, leads with this headline, "Middle Class Children Suffering Rickets." [1] It continues by stating that rickets is a 17th Century disease that is now caused by covering children in sunscreen and limiting time outside in the sunshine.
Dr. Nicholas Clarke, who is alarmed about the dramatic increase in the disease in just 24 months, states, “We are facing the daunting prospect of an area like Southampton, where it is high income, middle class and leafy in its surroundings, seeing increasing numbers of children with rickets, which would have been inconceivable only a year or so ago.”
Every physician in the world knows that rickets is a vitamin D-deficiency disease caused by a lack of sunlight, which is the most natural source of vitamin D. The fear of developing melanoma has driven us to slather ourselves with sunscreens that block up to 99% of vitamin D production. It has also caused us to otherwise avoid the sun like the plague, which ironically, brings on a plague of rickets, other bone diseases, cancer and heart disease, as well as myriad other maladies I discuss in my book.
The advice by the Powers of Darkness to avoid sunlight is one of the biggest frauds ever perpetrated on the public, whether in England or America. We know from an impressive analysis by Dr. Robyn Lucas and colleagues[2] that if those who would have us avoid the sunlight were totally successful, the outcome would be disastrous: for every case of death and disability caused by sunlight avoidance, there would be 2,000 cases of death and disability (caused by bone diseases alone) caused by sunlight avoidance! Of course, one of those diseases is rickets. Rickets, originally thought to be a disease of poor children who didn’t get enough sunlight due to working indoors, was thought to have been eradicated 80 years ago. It is now increasing rapidly. The blame can be placed squarely on the shoulders of those who profit from frightening us out of the sunlight. Non-burning sunlight, when available, can easily prevent or reverse this disease, and vitamin D supplements or tanning lamps can help raise vitamin D levels in pregnant mothers and their offspring-to-be. It is time to return to the sunlight! Just be sure not to burn.
[1] http://www.telegraph.co.uk/health/healthnews/8128781/Middle-class-children-suffering-rickets.html
[2] Robyn M Lucas, Anthony J McMichael, Bruce K Armstrong and Wayne T Smith. Estimating the global disease burden due to ultraviolet radiation exposure. International Journal of Epidemiology ;37(3):667-8.
Showing posts with label vitamin D deficiency. Show all posts
Showing posts with label vitamin D deficiency. Show all posts
Monday, November 15, 2010
Thursday, November 4, 2010
GETTING TO THE HEART OF THE MATTER: IS VITAMIN D DEFICIENCY A MAJOR PLAYER IN CARDIOVASCULAR DISEASES, DIABETES AND HIGH CHOLESTEROL?
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A most interesting piece of research on the relationship of heart disease to blood levels of vitamin D was recently published in the American Journal of Cardiology.[1] Researchers from the Intermountain Heart Collaborative (IHC) Study Group studied 41,497 subjects with at least one vitamin D measurement from 2000-2009. The prevalence of vitamin D deficiency in the subjects was 63.6%. The researchers found that during that time period, those with the lowest levels of vitamin D had highly significantly increased risk of developing diabetes, hypertension (high blood pressure), hyperlipidemia (high cholesterol and triglycerides) and peripheral vascular disease, all diseases in their own right, and all risk factors for developing heart disease. They also found that those who had none of these risk factors, but who had severe D deficiency, had an increased risk of developing diabetes, hypertension and hyperlipidemia.
Low vitamin D levels were also correlated closely to coronary artery disease, myocardial infarction (heart attack), heart failure, stroke and overall risk of death (not surprising). Of particular interest was the fact that hypertension was nearly 90% more likely in those with low vitamin D levels (less than 15 ng/ml) compared to those who had high levels (greater than 30 ng/ml). Unfortunately, the analysis did not compare those who were severely deficient with those who had "optimal levels," which I would consider to be 60 ng/ml or more. Had they done that, it is likely that the differences in disease and death rates would have been even more impressive. Other findings of this study showed that infections, kidney failure and fractures were more likely among those with the lowest levels of vitamin D.
This research is one of the best conducted and controlled that I've seen, but it is hardly the only finding that showed a dramatic increase in these diseases when comparing people with low vitamin D levels to those with higher levels. One of the most impressive compared the risk of heart attack with vitamin D levels and found those with the lowest D levels to have 2.4 times the risk of heart attack compared to those with the higher levels.[2]
As you can see, vitamin D makes a difference. if you'd rather not have a heart attack, it behooves you to optimize your vitamin D levels!
There are another dozen research papers that point out a terrific difference in heart disease rates among people with different vitamin D blood levels; however, they all come to the same conclusion. Get some sunlight and optimize your vitamin D levels!
[1] Jeffrey L. Anderson, MD, Heidi T. May, PhD, MSPH Benjamin D. Horne, PhD, MPH
Tami L. Bair, BS Nathaniel L. Hall, MD,, John F. Carlquist, PhD, Donald L. Lappé, MD, and
Joseph B. Muhlestein, MD Relation of Vitamin D Deficiency to Cardiovascular Risk Factors,
Disease Status, and Incident Events in a General Healthcare Population. Am J Cardiol 2010;106:963–968)
[2] Giovannucci E, Liu Y, Hollis BW, Rimm EB. 25-Hydroxyvitamin D and risk of myocardial infarction in men. Arch Intern Med 2008;168:1174–1180.
A most interesting piece of research on the relationship of heart disease to blood levels of vitamin D was recently published in the American Journal of Cardiology.[1] Researchers from the Intermountain Heart Collaborative (IHC) Study Group studied 41,497 subjects with at least one vitamin D measurement from 2000-2009. The prevalence of vitamin D deficiency in the subjects was 63.6%. The researchers found that during that time period, those with the lowest levels of vitamin D had highly significantly increased risk of developing diabetes, hypertension (high blood pressure), hyperlipidemia (high cholesterol and triglycerides) and peripheral vascular disease, all diseases in their own right, and all risk factors for developing heart disease. They also found that those who had none of these risk factors, but who had severe D deficiency, had an increased risk of developing diabetes, hypertension and hyperlipidemia.
Low vitamin D levels were also correlated closely to coronary artery disease, myocardial infarction (heart attack), heart failure, stroke and overall risk of death (not surprising). Of particular interest was the fact that hypertension was nearly 90% more likely in those with low vitamin D levels (less than 15 ng/ml) compared to those who had high levels (greater than 30 ng/ml). Unfortunately, the analysis did not compare those who were severely deficient with those who had "optimal levels," which I would consider to be 60 ng/ml or more. Had they done that, it is likely that the differences in disease and death rates would have been even more impressive. Other findings of this study showed that infections, kidney failure and fractures were more likely among those with the lowest levels of vitamin D.
This research is one of the best conducted and controlled that I've seen, but it is hardly the only finding that showed a dramatic increase in these diseases when comparing people with low vitamin D levels to those with higher levels. One of the most impressive compared the risk of heart attack with vitamin D levels and found those with the lowest D levels to have 2.4 times the risk of heart attack compared to those with the higher levels.[2]
As you can see, vitamin D makes a difference. if you'd rather not have a heart attack, it behooves you to optimize your vitamin D levels!
There are another dozen research papers that point out a terrific difference in heart disease rates among people with different vitamin D blood levels; however, they all come to the same conclusion. Get some sunlight and optimize your vitamin D levels!
[1] Jeffrey L. Anderson, MD, Heidi T. May, PhD, MSPH Benjamin D. Horne, PhD, MPH
Tami L. Bair, BS Nathaniel L. Hall, MD,, John F. Carlquist, PhD, Donald L. Lappé, MD, and
Joseph B. Muhlestein, MD Relation of Vitamin D Deficiency to Cardiovascular Risk Factors,
Disease Status, and Incident Events in a General Healthcare Population. Am J Cardiol 2010;106:963–968)
[2] Giovannucci E, Liu Y, Hollis BW, Rimm EB. 25-Hydroxyvitamin D and risk of myocardial infarction in men. Arch Intern Med 2008;168:1174–1180.
Tuesday, October 12, 2010
Sunlight, vitamin D and brain disorders. If you want to stay smart, get some sunlight!
Remember that when you read an article regarding blood levels of vitamin D, you are usually reading an article about sunlight: in the general population, the source of 90% of vitamin D is sunlight exposure.
A recent study on the relationship between cognitive impairment (thinking disorders) and vitamin D levels came to some very interesting conclusions. Dr. David Llewellyn, the lead researcher, stated the following: “Compared with those patients with sufficient levels of vitamin D, those participants who were very vitamin D deficient had a 6-fold higher risk for cognitive impairment, with a doubling of risk still for those who were considered deficient (≥25 to <50)"[1]” Dr. Llewellyn also stated that "low levels of vitamin D are just genuinely bad for the brain."
Vitamin D research continues to amaze. The evidence mounts that vitamin D deficiency has a profound negative influence on the function of the brain. Previously, I wrote of the compelling evidence that autism is a vitamin D deficiency disease and also presented research indicative of a role of vitamin D in reducing depression, elevating mood and increasing happiness. I also came across a small study of 17 psychiatric patients. Of these patients, two were borderline deficient and 15 were deficient. Seven had such low levels that blood tests could not produce an accurate reading. Encouragingly, the researchers recommended that mental-health inpatients receive adequate exposure to sunlight.[2]
In my book, I documented the critical importance of sunlight/vitamin D to the development and health of the brain:
1. Prenatal vitamin D deficiency in animals profoundly alters brain development.[3] [4]] Dr. Darryl Eyles and his colleagues state, “rats born to vitamin D-deficient mothers had profound alterations in the brain at birth.” The cortex was longer but not wider, the lateral ventricles were enlarged, the cortex was proportionally thinner and there was more cell proliferation throughout the brain… Our findings would suggest that low maternal vitamin D(3) has important ramifications for the developing brain."
2. Rats born to vitamin D-deficient mothers also have permanently damaged brains into adulthood[5] and exhibit hyperlocomotion (excessive movement from place to place) at the age of ten weeks.[6] Could this relate to hyperactivity in our children? Such rats also show impairment in learning and memory skills.
3. People hospitalized for bipolar disorder, and who are exposed to sunlight daily, are able to leave the hospital almost four days earlier than those who are not exposed,[7] and people hospitalized for seasonal affective disorder (SAD) also have shorter stays when they are placed in rooms on the sunny side of the hospital.[8]
4. Two studies of mice with abnormal vitamin D receptors (VDR) in the brain found an increase in anxiety, aggression, poor grooming, maternal pup neglect and cannibalism.[9] [10] Abnormal VDR cause a situation similar to vitamin D deficiency; the vitamin D that is available cannot properly stimulate the genes that prevent the anxiety, cannibalism, etc.
5. Another vital function of vitamin D is in inducing the production of nerve-growth factor (NGF), a protein that is essential for proper development of nerve cells in the brain and elsewhere.[11] [12] It is obvious that if vitamin D is not present, nerve cells will simply not develop as they should in the central nervous system and brain, leading to the mental disorders we discuss here.
Can it be that the Powers of Darkness (the “sunscare” promoters) are partially responsible for the widespread depression, negativism, anxiety and psychological disorder that plague our society to a greater extent each year? Their efforts, coupled with modern indoor lifestyles, are leading to increases in a plethora of diseases, some of which are disorders of the brain. I believe it will be only a matter of time until vitamin D deficiency in pregnant women will be correlated to abnormally low IQ in the children they bear. In another blog, I have already discussed autism as a vitamin D deficiency disease, and there is an indication that women who conceive in the fall and winter tend to bear more dyslexic children,[13] as well as children with other learning and reading disabilities.[14] [15] [14] The nervous system’s critical time to develop neural connections is in the first months after conception. If the pregnant woman is low in vitamin D during that time, it could affect the development of the fetal brain.Activated vitamin D is a potent hormone that is essential for proper brain development.
As a society and as parents, we cannot wait for more research before acting on the crying need for optimal vitamin D levels. Our mental and physical health, as well as that of our children, depends on regular, non-burning exposure sunlight, or other sources of vitamin D.
[1] Susan Jeffery, Low Vitamin D Levels Associated With Increased Risk for Cognitive Impairment Medscape Today, July 13,2010.
[2] Tiangga, E. et al. Psychiatric Bulletin 2008;32:390-93
[3] Eyles, D. et al. Vitamin D3 and brain development. Neuroscience 2003;118:641-53.
[4] McGrath, J. et al. Vitamin D3-implications for brain development. J Steroid Biochem Mol Biol 2004;89-90:557-60.
[5] Feron, F. et al. Developmental vitamin D3 deficiency alters the adult rat brain. Brain Res Bull. 2005 Mar 15;65(2):141-8.
[6] Burne, T. et al. Transient prenatal Vitamin D deficiency is associated with hyperlocomotion in adult rats. Behav Brain Res 2004;154:549-55.
[7] Benedetti, F. et al. Morning sunlight reduces length of hospitalization in bipolar depression. J Affect Disord 2001;62:221-23.
[8] Beauchemin, K. et al. sunny hospital rooms expedite recovery from severe and refractory depressions. J Affect Disord 1996;40:49-51.
[9] Kalueff, A. et al. Increased anxiety in mice lacking vitamin D receptor gene. Neuroreport 2004;15:1271-74.
[10] Kalueff, A. et al. Behavioral anomalies in mice evoked by Tokyo disruption of the vitamin D receptor gene. Neurosci Res 2006;54:254-60.
[11] Kiraly,S et al. Vitamin D as a neuroactive substance: review. Scientific World Journal 2006;6:125-139.
[12] Carlson, A. et al. Is vitamin D deficiency associated with peripheral neuropathy? The Endocrinologist 2007;17:319-25.
[13] Livingston, R. et al. Season of birth and neurodevelopmental disorders: summer birth is associated with dyslexia. J Am Acad Child Adolesc Psychiatry. 1993;32:612-6.
[14] Badian, N. Reading Disability in an Epidemiological Context: Incidence and Environmental Correlates. J Learn Disabil. 1984;17:129-36.
[15] Martin, R. Season of birth is related to child retention rates, achievement, and rate of diagnosis of specific LD. J Learn Disabil 2004;37:307-17
A recent study on the relationship between cognitive impairment (thinking disorders) and vitamin D levels came to some very interesting conclusions. Dr. David Llewellyn, the lead researcher, stated the following: “Compared with those patients with sufficient levels of vitamin D, those participants who were very vitamin D deficient had a 6-fold higher risk for cognitive impairment, with a doubling of risk still for those who were considered deficient (≥25 to <50)"[1]” Dr. Llewellyn also stated that "low levels of vitamin D are just genuinely bad for the brain."
Vitamin D research continues to amaze. The evidence mounts that vitamin D deficiency has a profound negative influence on the function of the brain. Previously, I wrote of the compelling evidence that autism is a vitamin D deficiency disease and also presented research indicative of a role of vitamin D in reducing depression, elevating mood and increasing happiness. I also came across a small study of 17 psychiatric patients. Of these patients, two were borderline deficient and 15 were deficient. Seven had such low levels that blood tests could not produce an accurate reading. Encouragingly, the researchers recommended that mental-health inpatients receive adequate exposure to sunlight.[2]
In my book, I documented the critical importance of sunlight/vitamin D to the development and health of the brain:
1. Prenatal vitamin D deficiency in animals profoundly alters brain development.[3] [4]] Dr. Darryl Eyles and his colleagues state, “rats born to vitamin D-deficient mothers had profound alterations in the brain at birth.” The cortex was longer but not wider, the lateral ventricles were enlarged, the cortex was proportionally thinner and there was more cell proliferation throughout the brain… Our findings would suggest that low maternal vitamin D(3) has important ramifications for the developing brain."
2. Rats born to vitamin D-deficient mothers also have permanently damaged brains into adulthood[5] and exhibit hyperlocomotion (excessive movement from place to place) at the age of ten weeks.[6] Could this relate to hyperactivity in our children? Such rats also show impairment in learning and memory skills.
3. People hospitalized for bipolar disorder, and who are exposed to sunlight daily, are able to leave the hospital almost four days earlier than those who are not exposed,[7] and people hospitalized for seasonal affective disorder (SAD) also have shorter stays when they are placed in rooms on the sunny side of the hospital.[8]
4. Two studies of mice with abnormal vitamin D receptors (VDR) in the brain found an increase in anxiety, aggression, poor grooming, maternal pup neglect and cannibalism.[9] [10] Abnormal VDR cause a situation similar to vitamin D deficiency; the vitamin D that is available cannot properly stimulate the genes that prevent the anxiety, cannibalism, etc.
5. Another vital function of vitamin D is in inducing the production of nerve-growth factor (NGF), a protein that is essential for proper development of nerve cells in the brain and elsewhere.[11] [12] It is obvious that if vitamin D is not present, nerve cells will simply not develop as they should in the central nervous system and brain, leading to the mental disorders we discuss here.
Can it be that the Powers of Darkness (the “sunscare” promoters) are partially responsible for the widespread depression, negativism, anxiety and psychological disorder that plague our society to a greater extent each year? Their efforts, coupled with modern indoor lifestyles, are leading to increases in a plethora of diseases, some of which are disorders of the brain. I believe it will be only a matter of time until vitamin D deficiency in pregnant women will be correlated to abnormally low IQ in the children they bear. In another blog, I have already discussed autism as a vitamin D deficiency disease, and there is an indication that women who conceive in the fall and winter tend to bear more dyslexic children,[13] as well as children with other learning and reading disabilities.[14] [15] [14] The nervous system’s critical time to develop neural connections is in the first months after conception. If the pregnant woman is low in vitamin D during that time, it could affect the development of the fetal brain.Activated vitamin D is a potent hormone that is essential for proper brain development.
As a society and as parents, we cannot wait for more research before acting on the crying need for optimal vitamin D levels. Our mental and physical health, as well as that of our children, depends on regular, non-burning exposure sunlight, or other sources of vitamin D.
[1] Susan Jeffery, Low Vitamin D Levels Associated With Increased Risk for Cognitive Impairment Medscape Today, July 13,2010.
[2] Tiangga, E. et al. Psychiatric Bulletin 2008;32:390-93
[3] Eyles, D. et al. Vitamin D3 and brain development. Neuroscience 2003;118:641-53.
[4] McGrath, J. et al. Vitamin D3-implications for brain development. J Steroid Biochem Mol Biol 2004;89-90:557-60.
[5] Feron, F. et al. Developmental vitamin D3 deficiency alters the adult rat brain. Brain Res Bull. 2005 Mar 15;65(2):141-8.
[6] Burne, T. et al. Transient prenatal Vitamin D deficiency is associated with hyperlocomotion in adult rats. Behav Brain Res 2004;154:549-55.
[7] Benedetti, F. et al. Morning sunlight reduces length of hospitalization in bipolar depression. J Affect Disord 2001;62:221-23.
[8] Beauchemin, K. et al. sunny hospital rooms expedite recovery from severe and refractory depressions. J Affect Disord 1996;40:49-51.
[9] Kalueff, A. et al. Increased anxiety in mice lacking vitamin D receptor gene. Neuroreport 2004;15:1271-74.
[10] Kalueff, A. et al. Behavioral anomalies in mice evoked by Tokyo disruption of the vitamin D receptor gene. Neurosci Res 2006;54:254-60.
[11] Kiraly,S et al. Vitamin D as a neuroactive substance: review. Scientific World Journal 2006;6:125-139.
[12] Carlson, A. et al. Is vitamin D deficiency associated with peripheral neuropathy? The Endocrinologist 2007;17:319-25.
[13] Livingston, R. et al. Season of birth and neurodevelopmental disorders: summer birth is associated with dyslexia. J Am Acad Child Adolesc Psychiatry. 1993;32:612-6.
[14] Badian, N. Reading Disability in an Epidemiological Context: Incidence and Environmental Correlates. J Learn Disabil. 1984;17:129-36.
[15] Martin, R. Season of birth is related to child retention rates, achievement, and rate of diagnosis of specific LD. J Learn Disabil 2004;37:307-17
Friday, July 30, 2010
Exposing the Sunlight/Melanoma Fraud: Part 1
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For the purposes of this article, we discuss regular, non-burning exposure to sunlight--the type of sunlight that slowly produces a tan--and the type of sunlight exposure that can save your life. Never, ever burn yourself in the sunlight. See your medical professional before making any changes in your sunlight habits.
Is melanoma caused by regular sunlight exposure, or are we being defrauded?
The Melanoma International Foundation (MIF), is one the Powers of Darkness--organizations that would have us all become vitamin D deficient and ill by avoiding the healing sun.[i] They, like many other sun phobes, believe that sunlight should be shunned as a detriment to human healthand that “90% or more of melanoma is caused by ultraviolet radiation either from the sun or tanning salons."[ii] The MIF states that “Melanoma is epidemic: rising faster than any other cancer and projected to affect one person in 50 by 2010, currently it affects 1 in 75. In 1935, only one in 1,500 was struck by the disease.” In other words, they say there has been a 3,000% increase in melanoma since 1935. If true, then their statement that sunlight is the cause of melanoma flies in the face of reason. Consider the following:
1. If melanoma has indeed increased exponentially since 1935, and that increase is due to sunlight exposure, then sunlight exposure must also have shown a parallel or at least significant increase in that time. To determine whether that has happened, I analyzed data from the Bureau of Labor Statistics, (BLS) to determine if there was an increase or decrease in human sunlight exposure during the years from 1910 to 2,000.[iii] I paid special attention to the changes since 1935, the year the MIF used as a baseline for measuring increases in melanoma incidence. The data showed that indoor occupations grew from one-quarter to three-quarters of total employment between 1910 and 2000, and that during the same period, the outdoor occupation of farming declined from 33% to 1.2% of total employment, a 96% reduction. The data also show that approximately 66% of the decline in the occupation of farmers and 50% of the decline in the occupation of farm laborers occurred after 1935.
Further information from the EPA determined that as of 1986, about 5 percent of adult men worked mostly outdoors, and that about 10 percent worked outside part of the time. The proportion of women who worked outside was thought to be lower. [iv]
This material demonstrates a dramatic shift from outdoor, sunlight-exposed activity to indoor, non-sunlight-exposed activity during the 20th Century, including 1935, the MIF-baseline year. According to these facts, if there is a relationship between sunlight exposure and melanoma, the relationship is inverse—the greater the exposure to sunlight, the less is the risk of melanoma.
It has been theorized that the answer to the statement above, is that a decreasing thickness of the ozone layer (allowing more intense sunlight exposure) is responsible for the increasing incidence of melanoma. However, research by Moan and Dahlback in Norway reported that yearly melanoma incidence increased 350% in men and 440% in women between 1957 and 1984—a period when there was absolutely no thinning of the ozone layer.[v]
2. If melanoma is increasing due to increased exposure to sunlight, it is clear that outdoor workers, being exposed to far more sunlight, would also have far more melanoma. Nevertheless, Godar, et al.[vi] present evidence that outdoor workers, while receiving 3-9 times the UVR exposure as indoor workers,[vii] [viii] have had no increase in melanoma since before 1940, whereas melanoma incidence in indoor workers has increased steadily and exponentially. Many other studies corroborate the Godar findings that outdoor workers have fewer melanomas than indoor workers.[ix] [x] [xi] [xii] [xiii] [xiv] [xv] [xvi] [xvii] [xviii] [xix] [xx] [xxi] [xxii] [xxiii] [xxiv]
I repeat: the greater the exposure to sunlight, the less is the risk of melanoma.
3. If sunlight exposure is the reason for the increase in melanoma, we would expect that areas of the body that receive the most exposure would also be the areas of greatest occurrence of the disease. This is not the case. Research by Garland, et al.,[xxv] assessing the incidence of melanoma occurring at various body sites, found higher rates on the trunk (seldom exposed to sunlight) than on the head and arms (commonly exposed to sunlight). Others have shown that melanoma in women occur primarily on the upper legs, and in men more frequently on the back—areas of little sunlight exposure.[xxvi] In African Americans, melanoma is more common on the soles of the feet and on the lower legs, where exposure to sunlight is almost non-existent.[xxvii]
Again: the greater the exposure to sunlight, the less is the risk of melanoma. How, then can sunlight cause melanoma? Keep in mind that sunscreen use has increased dramatically in the last four decades, paralleling the increase in melanoma. Sunscreens are meant to block sunlight, no? This is one more indication that melanoma risk is increased by sunlight deficiency.
4. A question: If melanoma is caused by sunlight exposure, why do melanomas occur on areas that seldom or never receive sunlight exposure—areas such as inside the mouth,[xxviii] on sexual organs[xxix] and armpits?[xxx]
Mull over this information and you will see that the promoting of sunlight as the cause of melanoma is the promoting of a fraud—a fraud that is creating death and destruction due to vitamin D deficiency, which correlates to more than 100 serious diseases and disorders (see my book for documentation). The Powers of Darkness will continue spreading falsehoods about sunlight and melanoma until the truth is brought forth. Join the sunshine movement and help to spread truth and light. And remember: when you enjoy the sunlight, be sure never to burn.
Be sure to look for Part 2 in my next blog. Perhaps the biggest fraud of all is that some dermatologists are diagnosing harmless skin spots as melanoma--a means to defraud insurance companies and increase profits. We will also show that melanoma incidence may not be increasing at all. Stay tuned. The next blog will provide information from enlightened dermatologists who believe that their own profession is misleading the public!
[i] Melanoma International Foundation, 2007 Facts about melanoma.
[ii] Melanoma International Foundation, 2007 Facts about melanoma.
[iii] Ian D. Wyatt and Daniel E. Hecker. Occupational changes in the 20th century. Monthly Labor Review, March 2006 pp 35-57: Office of Occupational Statistics and Employment Projections, Bureau of Labor Statistics
[iv] U.S. Congress, Office of Technology Assessment, Catching Our Breath: Next Steps for Reducing Urban Ozone, OTA-O-412 (Washington, DC: U.S. Government Printing Office, July 1989).
[v] J. Moan and A. Dahlback. The relationship between skin cancers, solar radiation and ozone depletion. Br J Cancer 1992; 65: 916–21
[vi] Godar DE, Landry RJ, Lucas AD. Increased UVA exposures and decreased cutaneous Vitamin D3 levels may be responsible for the increasing incidence of melanoma. Med hypothesis (2009), doi:10.1016/j.mehy.2008.09.056
[vii] Godar D. UV doses worldwide. Photochem Photobiol 2005;81:736–49.
[viii] Thieden E, Philipsen PA, Sandby-Møller J, Wulf HC. UV radiation exposure related to age, sex, occupation, and sun behavior based on time-stamped personal dosimeter readings. Arch Dermatol 2004;140:197–203.
[ix] Lee J. Melanoma and exposure to sunlight. Epidemiol Rev 1982;4:110–36.
[x] Vågero D, Ringbäck G, Kiviranta H. Melanoma and other tumors of the skin among office, other indoor and outdoor workers in Sweden 1961–1979 Brit J Cancer 1986;53:507–12.
[xi] Kennedy C, Bajdik CD, Willemze R, De Gruijl FR, Bouwes Bavinck JN; Leiden Skin Cancer Study. The influence of painful sunburns and lifetime sun exposure on the risk of actinic keratoses, seborrheic warts, melanocytic nevi, atypical nevi, and skin cancer. Invest Dermatol 2003;120:1087–93.
[xii] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[xiii] Kaskel P, Sander S, Kron M, Kind P, Peter RU, Krähn G. Outdoor activities in childhood: a protective factor for cutaneous melanoma? Results of a case-control study in 271 matched pairs. Br J Dermatol 2001;145:602-09.
[xiv] Garsaud P, Boisseau-Garsaud AM, Ossondo M, Azaloux H, Escanmant P, Le Mab G. Epidemiology of cutaneous melanoma in the French West Indies (Martinique). Am J Epidemiol 1998;147:66-8.
[xv] Le Marchand l, Saltzman S, Hankin JH, Wilkens LR, Franke SJM, Kolonel N. Sun exposure, diet and melanoma in Hawaii Caucasians. Am J Epidemiol 2006;164:232-45.
[xvi] Armstong K, Kricker A. The epidemiology of UV induced skin cancer. J Photochem Biol 2001;63:8-18
[xvii] Crombie IK. Distribution of malignant melanoma on the body surface. Br J Cancer 1981;43:842-9.
[xviii] Crombie IK. Variation of melanoma incidence with latitude in North America and Europe. Br J Cancer 1979;40:774-81.
[xix]Weinstock MA, Colditz,BA, Willett WC, Stampfer MJ. Bronstein, BR, Speizer FE. Nonfamilial cutaneous melanoma incidence in women associated with sun exposure before 20 years of age. Pediatrics 1989;84:199-204.
[xx] Tucker MA, Goldstein AM. Melanoma etiology: where are we? Oncogene 20f03;22:3042-52.
[xxi] Berwick M, Armstrong BK, Ben-Porat L, Fine J, Kricker A, Eberle C. Sun exposure and mortality from melanoma. J Nat Cancer Inst 2005;97:95-199.
[xxii] Veierød MB, Weiderpass E, Thörn M, Hansson J, Lund E, Armstrong B. A prospective study of pigmentation, sun exposure, and risk of cutaneous malignant melanoma in women. J Natl Cancer Inst 2003;95:1530-8.
[xxiii] Oliveria SA, Saraiya M, Geller AC, Heneghan MK, Jorgensen C. Sun exposure and risk of melanoma. Arch Dis Child 2006;91:131-8.
[xxiv] Elwood JM, Gallagher RP, Hill GB, Pearson JCG. Cutaneous melanoma in relation to intermittent and constant sun exposure—the western Canada melanoma study. Int J Cancer 2006;35:427-33
[xxv] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[xxvi] Rivers, J. Is there more than one road to melanoma? Lancet 2004;363:728-30.
[xxvii] Crombie, I. Racial differences in melanoma incidence. Br J Cancer 1979;40:185-93.
[xxviii] Burgess, A. et al. Parotidectomy: preoperative investigations and outcomes in a single surgeon practice. ANZ J Surg 2008 Sep;78(9):791-3.
[xxix] Ribé, A Melanocytic lesions of the genital area with attention given to atypical genital nevi. J Cutan Pathol. 2008 Nov;35 Suppl 2:24-7.
[xxx] Rhodes, A. Melanoma’s Public Message. Guest editorial, Skin and Allergy News 2003;34
For the purposes of this article, we discuss regular, non-burning exposure to sunlight--the type of sunlight that slowly produces a tan--and the type of sunlight exposure that can save your life. Never, ever burn yourself in the sunlight. See your medical professional before making any changes in your sunlight habits.
Is melanoma caused by regular sunlight exposure, or are we being defrauded?
The Melanoma International Foundation (MIF), is one the Powers of Darkness--organizations that would have us all become vitamin D deficient and ill by avoiding the healing sun.[i] They, like many other sun phobes, believe that sunlight should be shunned as a detriment to human healthand that “90% or more of melanoma is caused by ultraviolet radiation either from the sun or tanning salons."[ii] The MIF states that “Melanoma is epidemic: rising faster than any other cancer and projected to affect one person in 50 by 2010, currently it affects 1 in 75. In 1935, only one in 1,500 was struck by the disease.” In other words, they say there has been a 3,000% increase in melanoma since 1935. If true, then their statement that sunlight is the cause of melanoma flies in the face of reason. Consider the following:
1. If melanoma has indeed increased exponentially since 1935, and that increase is due to sunlight exposure, then sunlight exposure must also have shown a parallel or at least significant increase in that time. To determine whether that has happened, I analyzed data from the Bureau of Labor Statistics, (BLS) to determine if there was an increase or decrease in human sunlight exposure during the years from 1910 to 2,000.[iii] I paid special attention to the changes since 1935, the year the MIF used as a baseline for measuring increases in melanoma incidence. The data showed that indoor occupations grew from one-quarter to three-quarters of total employment between 1910 and 2000, and that during the same period, the outdoor occupation of farming declined from 33% to 1.2% of total employment, a 96% reduction. The data also show that approximately 66% of the decline in the occupation of farmers and 50% of the decline in the occupation of farm laborers occurred after 1935.
Further information from the EPA determined that as of 1986, about 5 percent of adult men worked mostly outdoors, and that about 10 percent worked outside part of the time. The proportion of women who worked outside was thought to be lower. [iv]
This material demonstrates a dramatic shift from outdoor, sunlight-exposed activity to indoor, non-sunlight-exposed activity during the 20th Century, including 1935, the MIF-baseline year. According to these facts, if there is a relationship between sunlight exposure and melanoma, the relationship is inverse—the greater the exposure to sunlight, the less is the risk of melanoma.
It has been theorized that the answer to the statement above, is that a decreasing thickness of the ozone layer (allowing more intense sunlight exposure) is responsible for the increasing incidence of melanoma. However, research by Moan and Dahlback in Norway reported that yearly melanoma incidence increased 350% in men and 440% in women between 1957 and 1984—a period when there was absolutely no thinning of the ozone layer.[v]
2. If melanoma is increasing due to increased exposure to sunlight, it is clear that outdoor workers, being exposed to far more sunlight, would also have far more melanoma. Nevertheless, Godar, et al.[vi] present evidence that outdoor workers, while receiving 3-9 times the UVR exposure as indoor workers,[vii] [viii] have had no increase in melanoma since before 1940, whereas melanoma incidence in indoor workers has increased steadily and exponentially. Many other studies corroborate the Godar findings that outdoor workers have fewer melanomas than indoor workers.[ix] [x] [xi] [xii] [xiii] [xiv] [xv] [xvi] [xvii] [xviii] [xix] [xx] [xxi] [xxii] [xxiii] [xxiv]
I repeat: the greater the exposure to sunlight, the less is the risk of melanoma.
3. If sunlight exposure is the reason for the increase in melanoma, we would expect that areas of the body that receive the most exposure would also be the areas of greatest occurrence of the disease. This is not the case. Research by Garland, et al.,[xxv] assessing the incidence of melanoma occurring at various body sites, found higher rates on the trunk (seldom exposed to sunlight) than on the head and arms (commonly exposed to sunlight). Others have shown that melanoma in women occur primarily on the upper legs, and in men more frequently on the back—areas of little sunlight exposure.[xxvi] In African Americans, melanoma is more common on the soles of the feet and on the lower legs, where exposure to sunlight is almost non-existent.[xxvii]
Again: the greater the exposure to sunlight, the less is the risk of melanoma. How, then can sunlight cause melanoma? Keep in mind that sunscreen use has increased dramatically in the last four decades, paralleling the increase in melanoma. Sunscreens are meant to block sunlight, no? This is one more indication that melanoma risk is increased by sunlight deficiency.
4. A question: If melanoma is caused by sunlight exposure, why do melanomas occur on areas that seldom or never receive sunlight exposure—areas such as inside the mouth,[xxviii] on sexual organs[xxix] and armpits?[xxx]
Mull over this information and you will see that the promoting of sunlight as the cause of melanoma is the promoting of a fraud—a fraud that is creating death and destruction due to vitamin D deficiency, which correlates to more than 100 serious diseases and disorders (see my book for documentation). The Powers of Darkness will continue spreading falsehoods about sunlight and melanoma until the truth is brought forth. Join the sunshine movement and help to spread truth and light. And remember: when you enjoy the sunlight, be sure never to burn.
Be sure to look for Part 2 in my next blog. Perhaps the biggest fraud of all is that some dermatologists are diagnosing harmless skin spots as melanoma--a means to defraud insurance companies and increase profits. We will also show that melanoma incidence may not be increasing at all. Stay tuned. The next blog will provide information from enlightened dermatologists who believe that their own profession is misleading the public!
[i] Melanoma International Foundation, 2007 Facts about melanoma.
[ii] Melanoma International Foundation, 2007 Facts about melanoma.
[iii] Ian D. Wyatt and Daniel E. Hecker. Occupational changes in the 20th century. Monthly Labor Review, March 2006 pp 35-57: Office of Occupational Statistics and Employment Projections, Bureau of Labor Statistics
[iv] U.S. Congress, Office of Technology Assessment, Catching Our Breath: Next Steps for Reducing Urban Ozone, OTA-O-412 (Washington, DC: U.S. Government Printing Office, July 1989).
[v] J. Moan and A. Dahlback. The relationship between skin cancers, solar radiation and ozone depletion. Br J Cancer 1992; 65: 916–21
[vi] Godar DE, Landry RJ, Lucas AD. Increased UVA exposures and decreased cutaneous Vitamin D3 levels may be responsible for the increasing incidence of melanoma. Med hypothesis (2009), doi:10.1016/j.mehy.2008.09.056
[vii] Godar D. UV doses worldwide. Photochem Photobiol 2005;81:736–49.
[viii] Thieden E, Philipsen PA, Sandby-Møller J, Wulf HC. UV radiation exposure related to age, sex, occupation, and sun behavior based on time-stamped personal dosimeter readings. Arch Dermatol 2004;140:197–203.
[ix] Lee J. Melanoma and exposure to sunlight. Epidemiol Rev 1982;4:110–36.
[x] Vågero D, Ringbäck G, Kiviranta H. Melanoma and other tumors of the skin among office, other indoor and outdoor workers in Sweden 1961–1979 Brit J Cancer 1986;53:507–12.
[xi] Kennedy C, Bajdik CD, Willemze R, De Gruijl FR, Bouwes Bavinck JN; Leiden Skin Cancer Study. The influence of painful sunburns and lifetime sun exposure on the risk of actinic keratoses, seborrheic warts, melanocytic nevi, atypical nevi, and skin cancer. Invest Dermatol 2003;120:1087–93.
[xii] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[xiii] Kaskel P, Sander S, Kron M, Kind P, Peter RU, Krähn G. Outdoor activities in childhood: a protective factor for cutaneous melanoma? Results of a case-control study in 271 matched pairs. Br J Dermatol 2001;145:602-09.
[xiv] Garsaud P, Boisseau-Garsaud AM, Ossondo M, Azaloux H, Escanmant P, Le Mab G. Epidemiology of cutaneous melanoma in the French West Indies (Martinique). Am J Epidemiol 1998;147:66-8.
[xv] Le Marchand l, Saltzman S, Hankin JH, Wilkens LR, Franke SJM, Kolonel N. Sun exposure, diet and melanoma in Hawaii Caucasians. Am J Epidemiol 2006;164:232-45.
[xvi] Armstong K, Kricker A. The epidemiology of UV induced skin cancer. J Photochem Biol 2001;63:8-18
[xvii] Crombie IK. Distribution of malignant melanoma on the body surface. Br J Cancer 1981;43:842-9.
[xviii] Crombie IK. Variation of melanoma incidence with latitude in North America and Europe. Br J Cancer 1979;40:774-81.
[xix]Weinstock MA, Colditz,BA, Willett WC, Stampfer MJ. Bronstein, BR, Speizer FE. Nonfamilial cutaneous melanoma incidence in women associated with sun exposure before 20 years of age. Pediatrics 1989;84:199-204.
[xx] Tucker MA, Goldstein AM. Melanoma etiology: where are we? Oncogene 20f03;22:3042-52.
[xxi] Berwick M, Armstrong BK, Ben-Porat L, Fine J, Kricker A, Eberle C. Sun exposure and mortality from melanoma. J Nat Cancer Inst 2005;97:95-199.
[xxii] Veierød MB, Weiderpass E, Thörn M, Hansson J, Lund E, Armstrong B. A prospective study of pigmentation, sun exposure, and risk of cutaneous malignant melanoma in women. J Natl Cancer Inst 2003;95:1530-8.
[xxiii] Oliveria SA, Saraiya M, Geller AC, Heneghan MK, Jorgensen C. Sun exposure and risk of melanoma. Arch Dis Child 2006;91:131-8.
[xxiv] Elwood JM, Gallagher RP, Hill GB, Pearson JCG. Cutaneous melanoma in relation to intermittent and constant sun exposure—the western Canada melanoma study. Int J Cancer 2006;35:427-33
[xxv] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[xxvi] Rivers, J. Is there more than one road to melanoma? Lancet 2004;363:728-30.
[xxvii] Crombie, I. Racial differences in melanoma incidence. Br J Cancer 1979;40:185-93.
[xxviii] Burgess, A. et al. Parotidectomy: preoperative investigations and outcomes in a single surgeon practice. ANZ J Surg 2008 Sep;78(9):791-3.
[xxix] Ribé, A Melanocytic lesions of the genital area with attention given to atypical genital nevi. J Cutan Pathol. 2008 Nov;35 Suppl 2:24-7.
[xxx] Rhodes, A. Melanoma’s Public Message. Guest editorial, Skin and Allergy News 2003;34
Labels:
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Wednesday, July 7, 2010
The Sunlight-avoidance insanity is causing severe vitamin D deficiency. Will you die from sunlight deprivation?
--
Due to fear of melanoma, a deadly disease that has been erroneously attributed to sunlight exposure, the people are leaving the sunlight and becoming more like cave dwellers. For those of you who believe in evolution, can you imagine that after millions of years under the sun, human beings have been frightened away from their heritage?
There is an inconvenient truth about melanoma that the Powers of Darkness (those who would take away our sunlight) would prefer you not know: people who work regularly outdoors have a lower risk of melanoma than those who work indoors.
Godar, et al.[1] present evidence that outdoor workers, while receiving 3-9 times the UVR exposure as indoor workers,[2] [3] have had no increase in melanoma since before 1940, whereas melanoma incidence in indoor workers has increased steadily and exponentially. Other research corroborates the idea that outdoor workers have fewer melanomas than indoor workers.[4] Vagero, et al.[5] showed that melanomas were more common among indoor office workers and other indoor workers than among outdoor workers, and Kennedy, et al.[6] showed that a lifetime of sunlight exposure correlated to a reduced risk of melanoma. Garland, et al.[7] showed that those who worked indoors had a 50% greater risk of melanoma than those who worked both indoors and outdoors, and Kaskel, et al.[8] demonstrated that children who engage in outdoor activities are less likely to develop melanoma than those who do not. Many other papers in the scientific literature show that both incidence and death rate from melanoma are reduced with increasing exposure to sunlight.[9] [10] [11] [12] [13] [14] [15] [16] [17] [18] [19]
This is not to say that sunburn does not contribute to melanoma, but it certainly shows that habitual, non-burning sun exposure correlates to a reduced risk of this deadly disease. In addition, there are approximately 105 additional diseases that are reduced among those who have higher sunlight exposure and therefore have higher levels of vitamin D (see my book for a discussion on each disease). We cannot live without vitamin D, which is not a vitamin at all, but in its most active form is a potent steroid hormone that controls at least 1,000 genes.[20] It is also important to understand that 90% of all vitamin D is produced in the skin by the action of sunlight on skin.[21]
However, blood levels of this important hormone are dropping precipitously in the American population, with a near doubling of the prevalence of vitamin D insufficiency that existed 10 years ago, and with 90% of Blacks, Hispanics and Asians, and 75% of the white population now suffering from the disorder.[22]
So what does this mean to the health of US citizens? I have calculated in a manuscript currently in preparation, that the diseases that correlate to sunlight deprivation/vitamin D deficiency kill approximately 1.42 million people per year in the US. Diseases that correlate to sunlight exposure kill approximately 1,500 people per year. That produces a ratio of about 948:1. I will continue with my mid-day sunbathing, thank you!
Remember that no one is advising the injudicious use of sunlight; baking in the sun for hours is neither necessary nor desirable, but regular sunlight exposure is a sine qua non for vibrant health. To say that we should avoid sunlight is like saying we should avoid water. Water correlates to drowning, but no one asks us to avoid water; if we did the results would be catastrophic, as are the results of vitamin D deficiency due to sunlight deprivation.
Of course, there are some extremely rare conditions that may preclude sunlight exposure. Check with your (enlightened) physician.
Is it time to return to reasonable, habitual, non-burning sunlight exposure? It could save your life!
[1] Godar DE, Landry RJ, Lucas AD. Increased UVA exposures and decreased cutaneous Vitamin D3 levels may be responsible for the increasing incidence of melanoma. Med hypothesis (2009), doi:10.1016/j.mehy.2008.09.056
[2] Godar D. UV doses worldwide. Photochem Photobiol 2005;81:736–49.
[3] Thieden E, Philipsen PA, Sandby-Møller J, Wulf HC. UV radiation exposure related to age, sex, occupation, and sun behavior based on time-stamped personal dosimeter readings. Arch Dermatol 2004;140:197–203.
[4] Lee J. Melanoma and exposure to sunlight. Epidemiol Rev 1982;4:110–36.
[5] Vågero D, Ringbäck G, Kiviranta H. Melanoma and other tumors of the skin among office, other indoor and outdoor workers in Sweden 1961–1979 Brit J Cancer 1986;53:507–12.
[6] Kennedy C, Bajdik CD, Willemze R, De Gruijl FR, Bouwes Bavinck JN; Leiden Skin Cancer Study. The influence of painful sunburns and lifetime sun exposure on the risk of actinic keratoses, seborrheic warts, melanocytic nevi, atypical nevi, and skin cancer. Invest Dermatol 2003;120:1087–93.
[7] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[8] Kaskel P, Sander S, Kron M, Kind P, Peter RU, Krähn G. Outdoor activities in childhood: a protective factor for cutaneous melanoma? Results of a case-control study in 271 matched pairs. Br J Dermatol 2001;145:602-09.
[9] Garsaud P, Boisseau-Garsaud AM, Ossondo M, Azaloux H, Escanmant P, Le Mab G. Epidemiology of cutaneous melanoma in the French West Indies (Martinique). Am J Epidemiol 1998;147:66-8.
[10] Le Marchand l, Saltzman S, Hankin JH, Wilkens LR, Franke SJM, Kolonel N. Sun exposure, diet and melanoma in Hawaii Caucasians. Am J Epidemiol 2006;164:232-45.
[11] Armstong K, Kricker A. The epidemiology of UV induced skin cancer. J Photochem Biol 2001;63:8-18
[12] Crombie IK. Distribution of malignant melanoma on the body surface. Br J Cancer 1981;43:842-9.
[13] Crombie IK. Variation of melanoma incidence with latitude in North America and Europe. Br J Cancer 1979;40:774-81.
[14]Weinstock MA, Colditz,BA, Willett WC, Stampfer MJ. Bronstein, BR, Speizer FE. Nonfamilial cutaneous melanoma incidence in women associated with sun exposure before 20 years of age. Pediatrics 1989;84:199-204.
[15] Tucker MA, Goldstein AM. Melanoma etiology: where are we? Oncogene 20f03;22:3042-52.
[16] Berwick M, Armstrong BK, Ben-Porat L, Fine J, Kricker A, Eberle C. Sun exposure and mortality from melanoma. J Nat Cancer Inst 2005;97:95-199.
[17] Veierød MB, Weiderpass E, Thörn M, Hansson J, Lund E, Armstrong B. A prospective study of pigmentation, sun exposure, and risk of cutaneous malignant melanoma in women. J Natl Cancer Inst 2003;95:1530-8.
[18] Oliveria SA, Saraiya M, Geller AC, Heneghan MK, Jorgensen C. Sun exposure and risk of melanoma. Arch Dis Child 2006;91:131-8.
[19] Elwood JM, Gallagher RP, Hill GB, Pearson JCG. Cutaneous melanoma in relation to intermittent and constant sun exposure—the western Canada melanoma study. Int J Cancer 2006;35:427-33
[20] Luz E. Tavera-Mendoza and John H. White. Cell Defenses and the Sunshine Vitamin. Scientific American 2007;November, p.42.
[21] Reichrath J. The challenge resulting from positive and negative effects of sunlight: how much solar UV exposure is appropriate to balance between risks of vitamin D deficiency and skin cancer? Prog Biophys Mol Biol 2006;92(1):9-16.
[22] Adams, J and Hewison, M. Update in Vitamin D. J Clin Endocrinol Metab 2010;95: 471–478.
Due to fear of melanoma, a deadly disease that has been erroneously attributed to sunlight exposure, the people are leaving the sunlight and becoming more like cave dwellers. For those of you who believe in evolution, can you imagine that after millions of years under the sun, human beings have been frightened away from their heritage?
There is an inconvenient truth about melanoma that the Powers of Darkness (those who would take away our sunlight) would prefer you not know: people who work regularly outdoors have a lower risk of melanoma than those who work indoors.
Godar, et al.[1] present evidence that outdoor workers, while receiving 3-9 times the UVR exposure as indoor workers,[2] [3] have had no increase in melanoma since before 1940, whereas melanoma incidence in indoor workers has increased steadily and exponentially. Other research corroborates the idea that outdoor workers have fewer melanomas than indoor workers.[4] Vagero, et al.[5] showed that melanomas were more common among indoor office workers and other indoor workers than among outdoor workers, and Kennedy, et al.[6] showed that a lifetime of sunlight exposure correlated to a reduced risk of melanoma. Garland, et al.[7] showed that those who worked indoors had a 50% greater risk of melanoma than those who worked both indoors and outdoors, and Kaskel, et al.[8] demonstrated that children who engage in outdoor activities are less likely to develop melanoma than those who do not. Many other papers in the scientific literature show that both incidence and death rate from melanoma are reduced with increasing exposure to sunlight.[9] [10] [11] [12] [13] [14] [15] [16] [17] [18] [19]
This is not to say that sunburn does not contribute to melanoma, but it certainly shows that habitual, non-burning sun exposure correlates to a reduced risk of this deadly disease. In addition, there are approximately 105 additional diseases that are reduced among those who have higher sunlight exposure and therefore have higher levels of vitamin D (see my book for a discussion on each disease). We cannot live without vitamin D, which is not a vitamin at all, but in its most active form is a potent steroid hormone that controls at least 1,000 genes.[20] It is also important to understand that 90% of all vitamin D is produced in the skin by the action of sunlight on skin.[21]
However, blood levels of this important hormone are dropping precipitously in the American population, with a near doubling of the prevalence of vitamin D insufficiency that existed 10 years ago, and with 90% of Blacks, Hispanics and Asians, and 75% of the white population now suffering from the disorder.[22]
So what does this mean to the health of US citizens? I have calculated in a manuscript currently in preparation, that the diseases that correlate to sunlight deprivation/vitamin D deficiency kill approximately 1.42 million people per year in the US. Diseases that correlate to sunlight exposure kill approximately 1,500 people per year. That produces a ratio of about 948:1. I will continue with my mid-day sunbathing, thank you!
Remember that no one is advising the injudicious use of sunlight; baking in the sun for hours is neither necessary nor desirable, but regular sunlight exposure is a sine qua non for vibrant health. To say that we should avoid sunlight is like saying we should avoid water. Water correlates to drowning, but no one asks us to avoid water; if we did the results would be catastrophic, as are the results of vitamin D deficiency due to sunlight deprivation.
Of course, there are some extremely rare conditions that may preclude sunlight exposure. Check with your (enlightened) physician.
Is it time to return to reasonable, habitual, non-burning sunlight exposure? It could save your life!
[1] Godar DE, Landry RJ, Lucas AD. Increased UVA exposures and decreased cutaneous Vitamin D3 levels may be responsible for the increasing incidence of melanoma. Med hypothesis (2009), doi:10.1016/j.mehy.2008.09.056
[2] Godar D. UV doses worldwide. Photochem Photobiol 2005;81:736–49.
[3] Thieden E, Philipsen PA, Sandby-Møller J, Wulf HC. UV radiation exposure related to age, sex, occupation, and sun behavior based on time-stamped personal dosimeter readings. Arch Dermatol 2004;140:197–203.
[4] Lee J. Melanoma and exposure to sunlight. Epidemiol Rev 1982;4:110–36.
[5] Vågero D, Ringbäck G, Kiviranta H. Melanoma and other tumors of the skin among office, other indoor and outdoor workers in Sweden 1961–1979 Brit J Cancer 1986;53:507–12.
[6] Kennedy C, Bajdik CD, Willemze R, De Gruijl FR, Bouwes Bavinck JN; Leiden Skin Cancer Study. The influence of painful sunburns and lifetime sun exposure on the risk of actinic keratoses, seborrheic warts, melanocytic nevi, atypical nevi, and skin cancer. Invest Dermatol 2003;120:1087–93.
[7] Garland FC, White MR, Garland CF, Shaw E, Gorham ED. Occupational sunlight exposure and melanoma in the USA Navy. Arch Environ Health 1990; 45:261-67.
[8] Kaskel P, Sander S, Kron M, Kind P, Peter RU, Krähn G. Outdoor activities in childhood: a protective factor for cutaneous melanoma? Results of a case-control study in 271 matched pairs. Br J Dermatol 2001;145:602-09.
[9] Garsaud P, Boisseau-Garsaud AM, Ossondo M, Azaloux H, Escanmant P, Le Mab G. Epidemiology of cutaneous melanoma in the French West Indies (Martinique). Am J Epidemiol 1998;147:66-8.
[10] Le Marchand l, Saltzman S, Hankin JH, Wilkens LR, Franke SJM, Kolonel N. Sun exposure, diet and melanoma in Hawaii Caucasians. Am J Epidemiol 2006;164:232-45.
[11] Armstong K, Kricker A. The epidemiology of UV induced skin cancer. J Photochem Biol 2001;63:8-18
[12] Crombie IK. Distribution of malignant melanoma on the body surface. Br J Cancer 1981;43:842-9.
[13] Crombie IK. Variation of melanoma incidence with latitude in North America and Europe. Br J Cancer 1979;40:774-81.
[14]Weinstock MA, Colditz,BA, Willett WC, Stampfer MJ. Bronstein, BR, Speizer FE. Nonfamilial cutaneous melanoma incidence in women associated with sun exposure before 20 years of age. Pediatrics 1989;84:199-204.
[15] Tucker MA, Goldstein AM. Melanoma etiology: where are we? Oncogene 20f03;22:3042-52.
[16] Berwick M, Armstrong BK, Ben-Porat L, Fine J, Kricker A, Eberle C. Sun exposure and mortality from melanoma. J Nat Cancer Inst 2005;97:95-199.
[17] Veierød MB, Weiderpass E, Thörn M, Hansson J, Lund E, Armstrong B. A prospective study of pigmentation, sun exposure, and risk of cutaneous malignant melanoma in women. J Natl Cancer Inst 2003;95:1530-8.
[18] Oliveria SA, Saraiya M, Geller AC, Heneghan MK, Jorgensen C. Sun exposure and risk of melanoma. Arch Dis Child 2006;91:131-8.
[19] Elwood JM, Gallagher RP, Hill GB, Pearson JCG. Cutaneous melanoma in relation to intermittent and constant sun exposure—the western Canada melanoma study. Int J Cancer 2006;35:427-33
[20] Luz E. Tavera-Mendoza and John H. White. Cell Defenses and the Sunshine Vitamin. Scientific American 2007;November, p.42.
[21] Reichrath J. The challenge resulting from positive and negative effects of sunlight: how much solar UV exposure is appropriate to balance between risks of vitamin D deficiency and skin cancer? Prog Biophys Mol Biol 2006;92(1):9-16.
[22] Adams, J and Hewison, M. Update in Vitamin D. J Clin Endocrinol Metab 2010;95: 471–478.
Saturday, June 26, 2010
Vitamin D for rheumatic diseases: how much is “sufficient?”
--
Two June research reports show that most patients with rheumatic diseases have levels below the “normal” range of vitamin D, considered in the report to be 48-145 nmol/L. In US measurements, that number is equivalent to 19.2-58 ng/ml. The diseases assessed within the reports were inflammatory joint disease, osteoarthritis, rheumatoid arthritis, myalgia, and osteoporosis. http://www.eurekalert.org/pub_releases/2010-06/elar-vdd061710.php
The research also showed that supplementation of 800-1,000 international units (IU) was not sufficient to normalize vitamin D levels in most patients.
A problem with such studies is that researchers must be in the dark ages not to know that 32 ng/ml is considered the lowest healthful level of vitamin D, and that optimal levels are 50-60. Therefore, when people are below the level of 19, they are not only below deficient, they are severely deficient. In these studies, it is likely that 80% of the people would have been deficient if the appropriate measure of 32 ng/ml had been used, and it is also likely that 100% were suboptimal.
An important fact is this: one minute of full-body sunlight exposure around noon can produce as much as 1,000 IU of vitamin D. This is Nature’s way. It is counterintuitive to suppose that a supplement of only 1,000 IU would be sufficient to achieve optimal levels of vitamin D, if Nature produces vastly more with within 20 minutes. And, in those seasons when vitamin D is not available, many vitamin D scientists now recommend 3,000-5,000 IU daily. Using the miniscule quantities of 400 IU (multivitamin tablet) to 1,000 IU to eliminate the inflammation of diseases like rheumatoid arthritis, unexplained muscle pain and chronic back pain is like trying to attack an elephant with a bb gun.
In all cases in these research papers, the subjects who had the lowest vitamin D levels also had the greatest disease activity, which is not surprising; vitamin D is powerful antiinflammatory hormone, and without it we suffer. More research need to be conducted, using 3,000-5,000 IU daily, or getting people outside with a lot of skin exposure when the sun is direct (without burning of course).
About one year ago I posted a blog that explained a great deal about rheumatoid arthritis and the influence of vitamin D in preventing and reducing the risk of the disease. The following is a repost of that blog, which fits in nicely with what we have just discussed:
Do you suffer from rheumatoid arthritis (RA)? Can vitamin D help?
Both dietary and supplemental vitamin D reduce the risk of RA, which is an autoimmune disease—a disease in which the body’s immune system attacks its own tissue. In a study of 29,000 women, those who ranked in the top third of vitamin D consumption had one-third less risk of RA.[1] It is likely that a greater vitamin D intake would have produced much better results, since it is virtually impossible to ingest sufficient vitamin D from food and multivitamins.
In studies performed on mice, vitamin D was shown to inhibit the progression of rheumatoid arthritis and minimize or prevent symptoms.[2] The same is true in humans. In subjects diagnosed with a form of the disease known as inflammatory arthritis, the lower the vitamin D levels are, the higher is the disease activity.[3] Vitamin D's anti-inflammatory properties and its ability to reduce the autoimmune response are likely responsible for the improvement in RA.[4]
Investigations also find that RA is more common in winter, consistent with the idea that vitamin D is a major factor in reducing the risk.[5] In a report from researchers in Ireland, it was shown that 70% of patients had low vitamin D levels and that 26% were severely deficient.[6] However, in that report, 21 ng/ml was considered as the deficiency level and 10 as the severe deficiency level. A level of 21 is dangerously deficient. The ideal level of vitamin D is 50-60 ng/ml. Using those numbers, it is likely that all of these patients ranged between deficient and severely deficient.
In our health institute/resort, we observed that guests with arthritis often regained full range of motion in their joints from a week to a month after beginning a program. I assumed that our anti-inflammatory vegetarian nutrition was responsible for the positive results. Now I realize that many of the benefits came from sunlight exposure during outdoor exercise.
RA prevention and relief are two more reasons to obtain regular, non-burning sunlight exposure. Remember that sunscreens can prevent 99% of vitamin D production by the skin.
[1] Merlino, L. et al. Vitamin D intake is inversely associated with rheumatoid arthritis: Results from the Iowa Women’s Health Study. Arthritis & Rheumatism 2004;50:72-77.
[2] Cantorna, M. et al. 1,25-Dihydroxycholecalciferol inhibits the progression of arthritis in murine models of human arthritis. J Nutr1998;128:68-72.
[3] Patel, S. et al. Serum vitamin D metabolite levels may be inversely associated with current disease activity in patients with early inflammatory polyarthritis. Arthritis Rheum 2007;56;2143-49.
[4] Cutolo, M. et al. Vitamin D in rheumatoid arthritis. Autoimmune Rev 2007;7:59-64.
[5] Cutolo, M. et al. Circannual vitamin D serum levels and disease activity in rheumatoid arthritis: Northern versus Southern Europe. Clin Exp Rheumatol 2006;24:702-4.
[6] Haroon, M. Report to European Union League Against Rheumatism , June 13, 2008.
Two June research reports show that most patients with rheumatic diseases have levels below the “normal” range of vitamin D, considered in the report to be 48-145 nmol/L. In US measurements, that number is equivalent to 19.2-58 ng/ml. The diseases assessed within the reports were inflammatory joint disease, osteoarthritis, rheumatoid arthritis, myalgia, and osteoporosis. http://www.eurekalert.org/pub_releases/2010-06/elar-vdd061710.php
The research also showed that supplementation of 800-1,000 international units (IU) was not sufficient to normalize vitamin D levels in most patients.
A problem with such studies is that researchers must be in the dark ages not to know that 32 ng/ml is considered the lowest healthful level of vitamin D, and that optimal levels are 50-60. Therefore, when people are below the level of 19, they are not only below deficient, they are severely deficient. In these studies, it is likely that 80% of the people would have been deficient if the appropriate measure of 32 ng/ml had been used, and it is also likely that 100% were suboptimal.
An important fact is this: one minute of full-body sunlight exposure around noon can produce as much as 1,000 IU of vitamin D. This is Nature’s way. It is counterintuitive to suppose that a supplement of only 1,000 IU would be sufficient to achieve optimal levels of vitamin D, if Nature produces vastly more with within 20 minutes. And, in those seasons when vitamin D is not available, many vitamin D scientists now recommend 3,000-5,000 IU daily. Using the miniscule quantities of 400 IU (multivitamin tablet) to 1,000 IU to eliminate the inflammation of diseases like rheumatoid arthritis, unexplained muscle pain and chronic back pain is like trying to attack an elephant with a bb gun.
In all cases in these research papers, the subjects who had the lowest vitamin D levels also had the greatest disease activity, which is not surprising; vitamin D is powerful antiinflammatory hormone, and without it we suffer. More research need to be conducted, using 3,000-5,000 IU daily, or getting people outside with a lot of skin exposure when the sun is direct (without burning of course).
About one year ago I posted a blog that explained a great deal about rheumatoid arthritis and the influence of vitamin D in preventing and reducing the risk of the disease. The following is a repost of that blog, which fits in nicely with what we have just discussed:
Do you suffer from rheumatoid arthritis (RA)? Can vitamin D help?
Both dietary and supplemental vitamin D reduce the risk of RA, which is an autoimmune disease—a disease in which the body’s immune system attacks its own tissue. In a study of 29,000 women, those who ranked in the top third of vitamin D consumption had one-third less risk of RA.[1] It is likely that a greater vitamin D intake would have produced much better results, since it is virtually impossible to ingest sufficient vitamin D from food and multivitamins.
In studies performed on mice, vitamin D was shown to inhibit the progression of rheumatoid arthritis and minimize or prevent symptoms.[2] The same is true in humans. In subjects diagnosed with a form of the disease known as inflammatory arthritis, the lower the vitamin D levels are, the higher is the disease activity.[3] Vitamin D's anti-inflammatory properties and its ability to reduce the autoimmune response are likely responsible for the improvement in RA.[4]
Investigations also find that RA is more common in winter, consistent with the idea that vitamin D is a major factor in reducing the risk.[5] In a report from researchers in Ireland, it was shown that 70% of patients had low vitamin D levels and that 26% were severely deficient.[6] However, in that report, 21 ng/ml was considered as the deficiency level and 10 as the severe deficiency level. A level of 21 is dangerously deficient. The ideal level of vitamin D is 50-60 ng/ml. Using those numbers, it is likely that all of these patients ranged between deficient and severely deficient.
In our health institute/resort, we observed that guests with arthritis often regained full range of motion in their joints from a week to a month after beginning a program. I assumed that our anti-inflammatory vegetarian nutrition was responsible for the positive results. Now I realize that many of the benefits came from sunlight exposure during outdoor exercise.
RA prevention and relief are two more reasons to obtain regular, non-burning sunlight exposure. Remember that sunscreens can prevent 99% of vitamin D production by the skin.
[1] Merlino, L. et al. Vitamin D intake is inversely associated with rheumatoid arthritis: Results from the Iowa Women’s Health Study. Arthritis & Rheumatism 2004;50:72-77.
[2] Cantorna, M. et al. 1,25-Dihydroxycholecalciferol inhibits the progression of arthritis in murine models of human arthritis. J Nutr1998;128:68-72.
[3] Patel, S. et al. Serum vitamin D metabolite levels may be inversely associated with current disease activity in patients with early inflammatory polyarthritis. Arthritis Rheum 2007;56;2143-49.
[4] Cutolo, M. et al. Vitamin D in rheumatoid arthritis. Autoimmune Rev 2007;7:59-64.
[5] Cutolo, M. et al. Circannual vitamin D serum levels and disease activity in rheumatoid arthritis: Northern versus Southern Europe. Clin Exp Rheumatol 2006;24:702-4.
[6] Haroon, M. Report to European Union League Against Rheumatism , June 13, 2008.
Tuesday, June 1, 2010
Air pollution, sunlight, vitamin D and type-two diabetes
Does air pollution cause diabetes, or does pollution cause vitamin D deficiency, which then leads to diabetes?
New research from Germany showed that women who lived in heavily air-polluted areas were at greater risk for type-two diabetes than those who lived in less-polluted areas. Those who lived within 100 meters of busy roadways doubled the diabetes risk. http://www.newswise.com/articles/study-suggests-link-between-air-pollution-and-type-2-diabetes-in-women
The authors assumed that the inhalation of pollutants was responsible for the increased risk of diabetes among those living in heavily-polluted areas, but I suggest another possibility: It is well-known that air pollution filters out sunlight and correlates to profoundly lower vitamin D levels. [1] [2] [3]
But do vitamin D levels have an influence on type-two diabetes? Research shows that Vitamin D levels correlate closely to insulin sensitivity; the higher the vitamin D levels, the more receptive the body is to the action of insulin, which makes carbohydrates easier to metabolize.[4] This same study shows that the higher the vitamin D levels are, the lower are the blood sugar levels. Other research shows that men with the highest vitamin D levels had a 30% reduced risk of type-2 diabetes compared to those with low levels,[5] probably because the beta cells of the pancreas (the insulin producing cells) have vitamin D receptors[6] and function more efficiently when vitamin D levels are higher.[7]
It is highly likely that the reason for the increased risk for diabetes was not the inhalation of air pollutants, but rather the lack of sunlight and subsequent vitamin D deficiency. It is time to leave the pollution and return to the sun.
[1] Mims FM., 3rd Significant reduction of UVB caused by smoke from biomass burning in Brazil. Photochem Photobiol. 1996 Nov;64(5):814–816.
[2] Agarwal, K et al. The impact of atmospheric pollution on vitamin D status of infants and toddlers in Delhi, India. Arch Dis Child 2002;87:111-113
[3] Holick MF. Environmental factors that influence the cutaneous production of vitamin D. Am J Clin Nutr 1995;61:(Suppl):638S-645S.
[4] Chiu K. et al. Hypovitaminosis D is associated with insulin resistance and beta cell dysfunction. Am J Clin Nutr 2004;79:820-25.
[5] Mattila, C. Serum 25-hydroxyvitamin D concentration and subsequent risk of type-2 diabetes. Diabetes Care 2007;30:2569-70.
[6] Brown, A. et al. Vitamin D. American J of Physiol 1999;277(2 Pt 2):F157-75.
[7] Norman, A. et al. Vitamin D deficiency inhibits pancreatic secretion of insulin. Science 1980;209:823-25.
New research from Germany showed that women who lived in heavily air-polluted areas were at greater risk for type-two diabetes than those who lived in less-polluted areas. Those who lived within 100 meters of busy roadways doubled the diabetes risk. http://www.newswise.com/articles/study-suggests-link-between-air-pollution-and-type-2-diabetes-in-women
The authors assumed that the inhalation of pollutants was responsible for the increased risk of diabetes among those living in heavily-polluted areas, but I suggest another possibility: It is well-known that air pollution filters out sunlight and correlates to profoundly lower vitamin D levels. [1] [2] [3]
But do vitamin D levels have an influence on type-two diabetes? Research shows that Vitamin D levels correlate closely to insulin sensitivity; the higher the vitamin D levels, the more receptive the body is to the action of insulin, which makes carbohydrates easier to metabolize.[4] This same study shows that the higher the vitamin D levels are, the lower are the blood sugar levels. Other research shows that men with the highest vitamin D levels had a 30% reduced risk of type-2 diabetes compared to those with low levels,[5] probably because the beta cells of the pancreas (the insulin producing cells) have vitamin D receptors[6] and function more efficiently when vitamin D levels are higher.[7]
It is highly likely that the reason for the increased risk for diabetes was not the inhalation of air pollutants, but rather the lack of sunlight and subsequent vitamin D deficiency. It is time to leave the pollution and return to the sun.
[1] Mims FM., 3rd Significant reduction of UVB caused by smoke from biomass burning in Brazil. Photochem Photobiol. 1996 Nov;64(5):814–816.
[2] Agarwal, K et al. The impact of atmospheric pollution on vitamin D status of infants and toddlers in Delhi, India. Arch Dis Child 2002;87:111-113
[3] Holick MF. Environmental factors that influence the cutaneous production of vitamin D. Am J Clin Nutr 1995;61:(Suppl):638S-645S.
[4] Chiu K. et al. Hypovitaminosis D is associated with insulin resistance and beta cell dysfunction. Am J Clin Nutr 2004;79:820-25.
[5] Mattila, C. Serum 25-hydroxyvitamin D concentration and subsequent risk of type-2 diabetes. Diabetes Care 2007;30:2569-70.
[6] Brown, A. et al. Vitamin D. American J of Physiol 1999;277(2 Pt 2):F157-75.
[7] Norman, A. et al. Vitamin D deficiency inhibits pancreatic secretion of insulin. Science 1980;209:823-25.
Labels:
air pollution,
diabetes,
sunlight,
vitamin D,
vitamin D deficiency
Wednesday, May 26, 2010
Sunlight, vitamin D and asthma in children
A current study shows African-American children with asthma are significantly more likely to have low levels of vitamin D than healthy African-American children.[1] Vitamin D deficiency in children with asthma was twenty times more likely than in healthy children.
This research is simply one of the latest proofs that the profound increase in asthma in the last few decades has been caused to a great extent by our societal exodus from sunlight exposure, along with the increased use of sunscreen, which can inhibit up to 99% of vitamin D production by the skin.[2]
Drs Litonjua and Weiss, in a medical hypothesis presented in 2007, made a strong case for vitamin D deficiency as a major player in the increase in asthma incidence among both children and adults.[3] They stated the following:
1. “… as populations grow more prosperous, more time is spent indoors, and there is less exposure to sunlight, leading to decreased cutaneous vitamin D production.”
2. “Vitamin D has been linked to immune system and lung development in utero, and our epidemiologic studies show that higher vitamin D intake by pregnant mothers reduces asthma risk by as much as 40% in children 3 to 5 years old.”
3. "Vitamin D deficiency has been associated with obesity, African American race (particularly in urban, inner-city settings), and recent immigrants to westernized countries, thus reflecting the epidemiologic patterns observed in the asthma epidemic."
These researchers might have also said that the Powers of Darkness—those who have a vested interest in convincing the populace to avoid all sunlight exposure and to cover up with sunscreens—are to a great extent responsible for the asthma pandemic that is gripping the nation. Reasonable, non burning sunlight exposure sunlight is normal and natural for children and adults, and those who would deprive us of that critically important contributor to human health should have the guilt of their actions weighing heavily on their consciences.
[1] Freishtat RJ, Iqbal SF, Pillai DK, Klein CJ, Ryan LM, Benton AS, Teach SJ. High prevalence of vitamin D deficiency among inner-city African American youth with asthma in Washington, DC. J Pediatr 2010;156:948-52.
[2] Matsuoka, L. et al. sunscreens suppress cutaneous vitamin D3 synthesis. Journal Clini Endocrinol Metab 1987; 64:1165-68.
[3] Litonjua AA, Weiss ST. Is vitamin D deficiency to blame for the asthma epidemic? J Allergy Clin Immunol 2007;120:1031–1035.
This research is simply one of the latest proofs that the profound increase in asthma in the last few decades has been caused to a great extent by our societal exodus from sunlight exposure, along with the increased use of sunscreen, which can inhibit up to 99% of vitamin D production by the skin.[2]
Drs Litonjua and Weiss, in a medical hypothesis presented in 2007, made a strong case for vitamin D deficiency as a major player in the increase in asthma incidence among both children and adults.[3] They stated the following:
1. “… as populations grow more prosperous, more time is spent indoors, and there is less exposure to sunlight, leading to decreased cutaneous vitamin D production.”
2. “Vitamin D has been linked to immune system and lung development in utero, and our epidemiologic studies show that higher vitamin D intake by pregnant mothers reduces asthma risk by as much as 40% in children 3 to 5 years old.”
3. "Vitamin D deficiency has been associated with obesity, African American race (particularly in urban, inner-city settings), and recent immigrants to westernized countries, thus reflecting the epidemiologic patterns observed in the asthma epidemic."
These researchers might have also said that the Powers of Darkness—those who have a vested interest in convincing the populace to avoid all sunlight exposure and to cover up with sunscreens—are to a great extent responsible for the asthma pandemic that is gripping the nation. Reasonable, non burning sunlight exposure sunlight is normal and natural for children and adults, and those who would deprive us of that critically important contributor to human health should have the guilt of their actions weighing heavily on their consciences.
[1] Freishtat RJ, Iqbal SF, Pillai DK, Klein CJ, Ryan LM, Benton AS, Teach SJ. High prevalence of vitamin D deficiency among inner-city African American youth with asthma in Washington, DC. J Pediatr 2010;156:948-52.
[2] Matsuoka, L. et al. sunscreens suppress cutaneous vitamin D3 synthesis. Journal Clini Endocrinol Metab 1987; 64:1165-68.
[3] Litonjua AA, Weiss ST. Is vitamin D deficiency to blame for the asthma epidemic? J Allergy Clin Immunol 2007;120:1031–1035.
Labels:
asthma,
Powers of Darkness,
sunlight,
sunscreens,
vitamin D,
vitamin D deficiency
Thursday, May 6, 2010
Vitamin D deficiency and death from diarrhea—another reason to return to the sunlight
--
WebMD just posted an article regarding research on vitamin D levels and a particular “superbug,” clostridium difficile or C. diff, which causes severe diarrhea and death. http://www.webmd.com/digestive-disorders/news/20100505/c-diff-may-be-worse-with-low-vitamin-d
C. Diff occurs primarily in people who have been taking broad-spectrum antibiotics that kill the friendly bacteria that would keep this superbug under control.
The author noted that 53% of the patients with “normal” levels of vitamin D were able to resolve the infection and then remain free of diarrhea after 30 days. In those with “low” vitamin D levels, only 26% resolved the infection and remained free of diarrhea after 30 days.
The researchers defined low vitamin D levels as 21 ng/ml, which is very low indeed, since a level of 32 is considered the lowest level for good health, and most scientists now recommend levels of about 60 ng/ml as optimal. I’m assuming that “normal” levels were considered to be anything over 21 ng/ml.
Vitamin D has been known for some time to be a potent antibiotic which breaks down the cell walls of both bacteria and viruses. However, it is not a “broad-spectrum” antibiotic—an antibiotic that kills not only the disease-causing pathogens—but also the friendly bacteria in the intestine that work to keep such pathogens at bay. Vitamin D recognizes only the foreign invader (pathogen) that can damage the body. Unfortunately, many pathogens develop resistance to antibiotic drugs, and the drugs cannot then kill the pathogen, which has a heyday because it is unopposed by the friendly bacteria that would normally thwart its action; hence, we have the term “superbug.”
Vitamin D works by stimulating the immune system’s army of cells such as T cells[1] and macrophages[2] to attack and destroy pathogens. There is no research I am aware of indicating that any pathogen develops a resistance to vitamin D. As antibiotics become less and less effective in fighting pathogens, optimal levels of vitamin D may become our last line of defense.
The WebMD article also points out that “Overall, 40% of the patients died during the month." A total of 67% of patients with low vitamin D levels died compared with 44% of those with normal vitamin D levels…” This indicates that the levels considered normal were not normal at all, and probably came nowhere near the optimal levels of 60 ng/ml.
And who is responsible for this loss of life? It is obviously the Powers of Darkness, those organizations that profit from teaching us that we should “protect” ourselves from any contact with sunlight or other sources of natural vitamin D production such as sun lamps. It behooves us to return to the habit of regular, non-burning sunlight exposure, such as sunbathing, preferably around midday. That certainly seems like a terrific alternative to death by diarrhea. Would you agree?
[1] von Essen MR, Kongsbak M, Schjerling P, Olgaard K, Odum N, Geisler C.. Vitamin D controls T cell antigen receptor signaling and activation of human T cells. Nat Immunol. 2010;11:344-49 .
[2] Kamen DL, Tangpricha V. Vitamin D and molecular actions on the immune system: modulation of innate and autoimmunity. J Mol Med 2010 May;88(5):441-50.
WebMD just posted an article regarding research on vitamin D levels and a particular “superbug,” clostridium difficile or C. diff, which causes severe diarrhea and death. http://www.webmd.com/digestive-disorders/news/20100505/c-diff-may-be-worse-with-low-vitamin-d
C. Diff occurs primarily in people who have been taking broad-spectrum antibiotics that kill the friendly bacteria that would keep this superbug under control.
The author noted that 53% of the patients with “normal” levels of vitamin D were able to resolve the infection and then remain free of diarrhea after 30 days. In those with “low” vitamin D levels, only 26% resolved the infection and remained free of diarrhea after 30 days.
The researchers defined low vitamin D levels as 21 ng/ml, which is very low indeed, since a level of 32 is considered the lowest level for good health, and most scientists now recommend levels of about 60 ng/ml as optimal. I’m assuming that “normal” levels were considered to be anything over 21 ng/ml.
Vitamin D has been known for some time to be a potent antibiotic which breaks down the cell walls of both bacteria and viruses. However, it is not a “broad-spectrum” antibiotic—an antibiotic that kills not only the disease-causing pathogens—but also the friendly bacteria in the intestine that work to keep such pathogens at bay. Vitamin D recognizes only the foreign invader (pathogen) that can damage the body. Unfortunately, many pathogens develop resistance to antibiotic drugs, and the drugs cannot then kill the pathogen, which has a heyday because it is unopposed by the friendly bacteria that would normally thwart its action; hence, we have the term “superbug.”
Vitamin D works by stimulating the immune system’s army of cells such as T cells[1] and macrophages[2] to attack and destroy pathogens. There is no research I am aware of indicating that any pathogen develops a resistance to vitamin D. As antibiotics become less and less effective in fighting pathogens, optimal levels of vitamin D may become our last line of defense.
The WebMD article also points out that “Overall, 40% of the patients died during the month." A total of 67% of patients with low vitamin D levels died compared with 44% of those with normal vitamin D levels…” This indicates that the levels considered normal were not normal at all, and probably came nowhere near the optimal levels of 60 ng/ml.
And who is responsible for this loss of life? It is obviously the Powers of Darkness, those organizations that profit from teaching us that we should “protect” ourselves from any contact with sunlight or other sources of natural vitamin D production such as sun lamps. It behooves us to return to the habit of regular, non-burning sunlight exposure, such as sunbathing, preferably around midday. That certainly seems like a terrific alternative to death by diarrhea. Would you agree?
[1] von Essen MR, Kongsbak M, Schjerling P, Olgaard K, Odum N, Geisler C.. Vitamin D controls T cell antigen receptor signaling and activation of human T cells. Nat Immunol. 2010;11:344-49 .
[2] Kamen DL, Tangpricha V. Vitamin D and molecular actions on the immune system: modulation of innate and autoimmunity. J Mol Med 2010 May;88(5):441-50.
Monday, May 3, 2010
Rheumatoid arthritis, sunlight deprivation and vitamin D—so what’s new?
--
An interesting study on rheumatoid arthritis (RA) and latitude appeared recently in the online journal, Environmental Health Perspectives.[1] The researchers found that the disease was considerably more prevalent among those living at higher latitudes than at lower latitudes. They had expected to find a relationship between air pollution and RA, but such a relationship did not exist. They concluded that the correlation of high latitudes to RA was probably due to less vitamin-D producing sunlight exposure and consequent vitamin D deficiency. My response is, “This is news?”
There should have been so expression of surprise about the results. RA is one of many autoimmune diseases, and it has long been known that vitamin D has a profound, positive influence on those diseases.[2] These are diseases in which the immune system attacks the body’s own healthy tissue, mistaking that tissue for a foreign invader. When this happens, a specialized immune-system cell (called a T cell) assaults and kills some of the tissue of a targeted organ. Autoimmune diseases, then, are caused by T cells gone awry. In the case of rheumatoid arthritis the immune system attacks the collagen-producing cells of the joints. T cells in a person with an autoimmune disease lack the “intelligence” to recognize that they are attacking the wrong tissue. That intelligence, in part, comes from vitamin D, the receptors of which are found in large quantities in mature T cells and even larger concentrations in immature T cells produced in the thymus gland. Without vitamin D stimulation of the receptor sites, these cells will not function properly. When vitamin D is present however, they have the ability to discern between foreign invaders and the body’s own tissue. Animal experiments show that vitamin D acts as a “selective immunosuppressant” (see footnote 2), meaning that it gives T cells the ability to distinguish between “good and evil.” It is this ability to reduce the autoimmune response, as well as its anti-inflammatory properties that are likely responsible for the lessened risk of RA in sun-deprived areas, and this is further corroborated by the fact that RA is also more severe in winter,[3] a time of less sunshine, and a time when sunlight exposure in northern latitudes does not produce vitamin D.
In another report from researchers in Ireland (a northern country with little sunlight exposure), it was shown that 70% of patients had low vitamin D levels and that 26% were severely deficient.[4] However, in that report, 21 ng/ml was considered as the deficiency level and 10 ng/ml as the severe deficiency level. In reality, a level of 21 is dangerously deficient. It is likely that all of these patients had levels under 32 ng/ml, now considered the lowest level for good health. My opinion is that levels of 50 to 60 are optimal.
Considering this information, it should have come as no surprise that RA was more common at higher latitudes. It is time to return to the sun in the summer and to find ways of maintaining optimal vitamin D levels in the winter through the use of sun lamps.
[1] http://ehp03.niehs.nih.gov/article/info%3Adoi%2F10.1289%2Fehp.0901861
[2] http://www.fasebj.org/cgi/content/full/15/14/2579
[3] http://www.ncbi.nlm.nih.gov/pubmed/17967727
[4] http://fatlies.wordpress.com/2008/06/
An interesting study on rheumatoid arthritis (RA) and latitude appeared recently in the online journal, Environmental Health Perspectives.[1] The researchers found that the disease was considerably more prevalent among those living at higher latitudes than at lower latitudes. They had expected to find a relationship between air pollution and RA, but such a relationship did not exist. They concluded that the correlation of high latitudes to RA was probably due to less vitamin-D producing sunlight exposure and consequent vitamin D deficiency. My response is, “This is news?”
There should have been so expression of surprise about the results. RA is one of many autoimmune diseases, and it has long been known that vitamin D has a profound, positive influence on those diseases.[2] These are diseases in which the immune system attacks the body’s own healthy tissue, mistaking that tissue for a foreign invader. When this happens, a specialized immune-system cell (called a T cell) assaults and kills some of the tissue of a targeted organ. Autoimmune diseases, then, are caused by T cells gone awry. In the case of rheumatoid arthritis the immune system attacks the collagen-producing cells of the joints. T cells in a person with an autoimmune disease lack the “intelligence” to recognize that they are attacking the wrong tissue. That intelligence, in part, comes from vitamin D, the receptors of which are found in large quantities in mature T cells and even larger concentrations in immature T cells produced in the thymus gland. Without vitamin D stimulation of the receptor sites, these cells will not function properly. When vitamin D is present however, they have the ability to discern between foreign invaders and the body’s own tissue. Animal experiments show that vitamin D acts as a “selective immunosuppressant” (see footnote 2), meaning that it gives T cells the ability to distinguish between “good and evil.” It is this ability to reduce the autoimmune response, as well as its anti-inflammatory properties that are likely responsible for the lessened risk of RA in sun-deprived areas, and this is further corroborated by the fact that RA is also more severe in winter,[3] a time of less sunshine, and a time when sunlight exposure in northern latitudes does not produce vitamin D.
In another report from researchers in Ireland (a northern country with little sunlight exposure), it was shown that 70% of patients had low vitamin D levels and that 26% were severely deficient.[4] However, in that report, 21 ng/ml was considered as the deficiency level and 10 ng/ml as the severe deficiency level. In reality, a level of 21 is dangerously deficient. It is likely that all of these patients had levels under 32 ng/ml, now considered the lowest level for good health. My opinion is that levels of 50 to 60 are optimal.
Considering this information, it should have come as no surprise that RA was more common at higher latitudes. It is time to return to the sun in the summer and to find ways of maintaining optimal vitamin D levels in the winter through the use of sun lamps.
[1] http://ehp03.niehs.nih.gov/article/info%3Adoi%2F10.1289%2Fehp.0901861
[2] http://www.fasebj.org/cgi/content/full/15/14/2579
[3] http://www.ncbi.nlm.nih.gov/pubmed/17967727
[4] http://fatlies.wordpress.com/2008/06/
Monday, December 21, 2009
Do 250,000 North American babies die each year due to vitamin D deficiency?
Recent evidence has shown that pregnant mothers who were given 4,000 IU (ten times the usual dose) of vitamin D daily had only half the risk of giving birth to premature babies as those who were not supplemented. [1] That amount can also be produced by about 20 minutes of full- body exposure to non-burning sunlight at midday.
The importance of this information is shown in the fact that annually, half of all premature babies die in the first month after birth, according to the March of Dimes.[2] In North America, about 500,000 premature births occur annually.[2] If vitamin D supplementation could prevent half of these deaths, that would save the lives of 250,000 babies per year. Worldwide, the lives saved might be as many as 7 million, since approximately 13 million babies are born prematurely each year. We also know that the average cost for each premature baby in the first year of life is about $49,000. http://www.marchofdimes.com/aboutus/22684_55250.asp
Premature babies, of course, are also low-birth-weight babies in most cases, which present an additional problem. Here is one more reason for mothers to get back in the sunlight: the potential for low birth weight in their babies.
Low birth weight is associated with poor mood, anxiety, depression, high blood pressure and other problems during childhood and afterward. Recent research shows that low birth weight is related to exposure by pregnant women to winter temperatures during a critical developmental time for the fetus.[3] [4] This could indicate vitamin D deficiency of the pregnant mother during “vitamin D winter,” the time of year in northern latitudes when the sun is too low in the sky to produce vitamin D. The answer, of course, is to use a tanning bed or take vitamin D3 supplements (3,000-5,000 IU) during the winter. Remember never to burn!
Those who make a living frightening people out of the sunlight are responsible for much of the vitamin D deficiency in the population of North America. Don’t expect them to change. Non-burning sunlight is a wonderful gift for health, and we must stop the insanity that is causing vitamin D deficiency. The child needs every possible advantage prior to birth, and one of the advantages is a mom with high vitamin D levels. The only source of vitamin D for the fetus is the mother’s body, and the only natural way to obtain vitamin D is exposure to sunlight.
[1] Hollis, B. and Wagner C. Report from an international conference on vitamin D in Bruges, Belgium.
[2] March of Dimes statement Oct 4, 2009, based on World Health Organization (WHO) statistics.
[3] [1] Elter K, et al. Exposure to low outdoor temperature in the midtrimester is associated with low birth weight. Aust N Z J Obstet Gynecol 2004;44:553-7.
[4] Murray, L. et al. Links of Season and outdoor ambient temperature: effects on birth weight. Obstet Gynecol. 2000 Nov;96(5 Pt 1):689-95.
The importance of this information is shown in the fact that annually, half of all premature babies die in the first month after birth, according to the March of Dimes.[2] In North America, about 500,000 premature births occur annually.[2] If vitamin D supplementation could prevent half of these deaths, that would save the lives of 250,000 babies per year. Worldwide, the lives saved might be as many as 7 million, since approximately 13 million babies are born prematurely each year. We also know that the average cost for each premature baby in the first year of life is about $49,000. http://www.marchofdimes.com/aboutus/22684_55250.asp
Premature babies, of course, are also low-birth-weight babies in most cases, which present an additional problem. Here is one more reason for mothers to get back in the sunlight: the potential for low birth weight in their babies.
Low birth weight is associated with poor mood, anxiety, depression, high blood pressure and other problems during childhood and afterward. Recent research shows that low birth weight is related to exposure by pregnant women to winter temperatures during a critical developmental time for the fetus.[3] [4] This could indicate vitamin D deficiency of the pregnant mother during “vitamin D winter,” the time of year in northern latitudes when the sun is too low in the sky to produce vitamin D. The answer, of course, is to use a tanning bed or take vitamin D3 supplements (3,000-5,000 IU) during the winter. Remember never to burn!
Those who make a living frightening people out of the sunlight are responsible for much of the vitamin D deficiency in the population of North America. Don’t expect them to change. Non-burning sunlight is a wonderful gift for health, and we must stop the insanity that is causing vitamin D deficiency. The child needs every possible advantage prior to birth, and one of the advantages is a mom with high vitamin D levels. The only source of vitamin D for the fetus is the mother’s body, and the only natural way to obtain vitamin D is exposure to sunlight.
[1] Hollis, B. and Wagner C. Report from an international conference on vitamin D in Bruges, Belgium.
[2] March of Dimes statement Oct 4, 2009, based on World Health Organization (WHO) statistics.
[3] [1] Elter K, et al. Exposure to low outdoor temperature in the midtrimester is associated with low birth weight. Aust N Z J Obstet Gynecol 2004;44:553-7.
[4] Murray, L. et al. Links of Season and outdoor ambient temperature: effects on birth weight. Obstet Gynecol. 2000 Nov;96(5 Pt 1):689-95.
Monday, December 14, 2009
Melanoma: Midsummer Night’s Dream or Vitamin D-Deficiency Nightmare?
One of the most interesting medical research papers to arrive in recent memory is a 2009 study reported in the British Journal of Dermatology entitled, “Melanoma epidemic: a midsummer night’s dream?” [1] In it the authors make the case that melanoma is not caused by sunlight, but rather by an increasing diagnosis of benign lesions as melanoma. In other words, small spots on the skin that are harmless, and that in the past would have been classified as benign, are now being called stage-one melanoma. The authors point out that new diagnoses of stage-one melanoma have increased dramatically over the past few years, but new diagnoses of stage-two, -three and -four melanomas have not increased at all.
Some have suggested that the lack of increase in the latter stages of Melanoma is due to quick removal of the type-one melanomas, which prevents their progression to full-blown cancers. However, the authors point out that those in the study with type-two, three and four melanomas had not been previously diagnosed with type-one, and therefore could not have been “saved” by removal of type-one; the advanced cases were new presentations--people who had not been previously diagnosed with any stage of melanoma.
The case of these dermatologists—that melanoma is a “midsummer night’s dream”—is compelling. Obviously, millions of people who had nothing more than harmless lesions have been diagnosed with melanoma and have had their lesions removed surgically.
The researchers ended their analysis with this statement: “These findings should lead to a reconsideration of the treatment of ‘early’ lesions, a search for better diagnostic methods to distinguish them from truly malignant melanomas, re-evaluation of the role of ultraviolet radiation and recommendations for protection from it, as well as the need for a new direction in the search for the cause of melanoma.”
I can only say “amen” to this conclusion. However, these are not the first dermatologists to question the “epidemic” of melanoma and deny that sunlight is the cause. Dr. Bernard Ackerman, a celebrated dermatologist, wrote a monograph of several hundred pages entitled, Sunlight and the “Epidemic’ of Melanoma, Myth on Myth, in which he made the same argument about the supposed melanoma epidemic being due to incorrect diagnoses.[2] Dr. Arthur Rhodes, another dermatologist, has also given examples of many people who have died with real melanoma that occurred on areas of the body that were never exposed to sunlight.[3] These unfortunate people, believing that the lesions they discovered could not be melanoma because there was no sun exposure, failed to get help until it was too late.
Meanwhile, the world becomes more and more deficient in vitamin D due to the efforts of the “sunscare” movement that would have us believe that sunlight, one of God’s greatest gifts to living beings, is public enemy number one. This has resulted in incredible rates of vitamin D deficiency which have further resulted in an increase in at least 18 major cancers including breast, prostate and colon cancers. It has also resulted in increasing rates of heart disease, infections including flu, autism, and numerous other maladies that I discuss and fully document in my book. Never has there been a greater fraud than the push to scare people out of the sun to avoid a disease—melanoma—that is not an epidemic at all, and whose risk is increased by sun avoidance. Non-burning sunlight exposure is absolutely necessary for optimal human health.
Not only is the “epidemic” of melanoma a midsummer night’s dream, it has become a vitamin D-deficiency nightmare.
[1] N.J. Levell, C.C. Beattie,* S. Shuster and D.C. Greenberg* Melanoma epidemic: a midsummer night’s dream? British Journal of Dermatology 2009;161:630–634
[2] Ackerman, A. Sun and the “Epidemic” of Melanoma, Myth on Myth. Ardor Scribendi, LTD, New York, 2008
[3] Rhodes, A. Guest editorial, Melanoma’s Public Message. Skin and Allergy News 2003;34:1-4
Some have suggested that the lack of increase in the latter stages of Melanoma is due to quick removal of the type-one melanomas, which prevents their progression to full-blown cancers. However, the authors point out that those in the study with type-two, three and four melanomas had not been previously diagnosed with type-one, and therefore could not have been “saved” by removal of type-one; the advanced cases were new presentations--people who had not been previously diagnosed with any stage of melanoma.
The case of these dermatologists—that melanoma is a “midsummer night’s dream”—is compelling. Obviously, millions of people who had nothing more than harmless lesions have been diagnosed with melanoma and have had their lesions removed surgically.
The researchers ended their analysis with this statement: “These findings should lead to a reconsideration of the treatment of ‘early’ lesions, a search for better diagnostic methods to distinguish them from truly malignant melanomas, re-evaluation of the role of ultraviolet radiation and recommendations for protection from it, as well as the need for a new direction in the search for the cause of melanoma.”
I can only say “amen” to this conclusion. However, these are not the first dermatologists to question the “epidemic” of melanoma and deny that sunlight is the cause. Dr. Bernard Ackerman, a celebrated dermatologist, wrote a monograph of several hundred pages entitled, Sunlight and the “Epidemic’ of Melanoma, Myth on Myth, in which he made the same argument about the supposed melanoma epidemic being due to incorrect diagnoses.[2] Dr. Arthur Rhodes, another dermatologist, has also given examples of many people who have died with real melanoma that occurred on areas of the body that were never exposed to sunlight.[3] These unfortunate people, believing that the lesions they discovered could not be melanoma because there was no sun exposure, failed to get help until it was too late.
Meanwhile, the world becomes more and more deficient in vitamin D due to the efforts of the “sunscare” movement that would have us believe that sunlight, one of God’s greatest gifts to living beings, is public enemy number one. This has resulted in incredible rates of vitamin D deficiency which have further resulted in an increase in at least 18 major cancers including breast, prostate and colon cancers. It has also resulted in increasing rates of heart disease, infections including flu, autism, and numerous other maladies that I discuss and fully document in my book. Never has there been a greater fraud than the push to scare people out of the sun to avoid a disease—melanoma—that is not an epidemic at all, and whose risk is increased by sun avoidance. Non-burning sunlight exposure is absolutely necessary for optimal human health.
Not only is the “epidemic” of melanoma a midsummer night’s dream, it has become a vitamin D-deficiency nightmare.
[1] N.J. Levell, C.C. Beattie,* S. Shuster and D.C. Greenberg* Melanoma epidemic: a midsummer night’s dream? British Journal of Dermatology 2009;161:630–634
[2] Ackerman, A. Sun and the “Epidemic” of Melanoma, Myth on Myth. Ardor Scribendi, LTD, New York, 2008
[3] Rhodes, A. Guest editorial, Melanoma’s Public Message. Skin and Allergy News 2003;34:1-4
Labels:
cancer,
melanoma,
vitamin D,
vitamin D deficiency
Tuesday, May 12, 2009
Will vitamin D help the U.S. dominate the 2012 Olympics?
Vitamin D may indeed help the U.S. dominate the next summer Olympics. So says an online article at http://www.postchronicle.com/news/original/article_212229302.shtml
The article cites a new scientific paper, of which I was a coauthor(1), that presents compelling evidence that optimal vitamin D levels, produced by exposure to sunlight or sunlamps, dramatically improves strength, reaction time and endurance while profoundly reducing athletic injuries. It also increases the number and size of fast-twitch muscle fibers.
Most athletes, particularly winter athletes, are very low in vitamin D levels. When there is a correction of that deficiency, performance improves and injuries subside.
I have tried to get this information to the Utah Jazz for more than two years, but have not been able to get an appointment. The Jazz had more injuries than any team I have ever seen and still managed to make the playoffs. Their coaching is superb; no one is better than Jerry Sloan. But their listless play on the road and their incredible injury count screams that the team is vitamin D deficient. So, we might also have a headline that says, "Vitamin D may help the Utah Jazz (or some other struggling team) win the NBA championship in 2010." I will continue to try to find a team that will listen. Interested parties may contact me at megamarc1@aol.com
Dr. John Cannell (the lead author of the paper) and I have nearly finished a book entitled "Quicker, Stronger, Faster with vitamin D." It will expatiate on the materials in the paper and furnish additional information.
In the meantime, all of you who are athletes should have your vitamin D levels assessed. If you are deficient, a bit more sunshine and vitamin D may just help you win your next competition.
Reference:
(1) Cannell JJ, Hollis BW, Sorenson MB, Taft TN, Anderson JJ. Athletic Performance and Vitamin D. Med Sci Sports Exerc. 2009 Apr 3. [Epub ahead of print]
The article cites a new scientific paper, of which I was a coauthor(1), that presents compelling evidence that optimal vitamin D levels, produced by exposure to sunlight or sunlamps, dramatically improves strength, reaction time and endurance while profoundly reducing athletic injuries. It also increases the number and size of fast-twitch muscle fibers.
Most athletes, particularly winter athletes, are very low in vitamin D levels. When there is a correction of that deficiency, performance improves and injuries subside.
I have tried to get this information to the Utah Jazz for more than two years, but have not been able to get an appointment. The Jazz had more injuries than any team I have ever seen and still managed to make the playoffs. Their coaching is superb; no one is better than Jerry Sloan. But their listless play on the road and their incredible injury count screams that the team is vitamin D deficient. So, we might also have a headline that says, "Vitamin D may help the Utah Jazz (or some other struggling team) win the NBA championship in 2010." I will continue to try to find a team that will listen. Interested parties may contact me at megamarc1@aol.com
Dr. John Cannell (the lead author of the paper) and I have nearly finished a book entitled "Quicker, Stronger, Faster with vitamin D." It will expatiate on the materials in the paper and furnish additional information.
In the meantime, all of you who are athletes should have your vitamin D levels assessed. If you are deficient, a bit more sunshine and vitamin D may just help you win your next competition.
Reference:
(1) Cannell JJ, Hollis BW, Sorenson MB, Taft TN, Anderson JJ. Athletic Performance and Vitamin D. Med Sci Sports Exerc. 2009 Apr 3. [Epub ahead of print]
Wednesday, April 8, 2009
Our medical advisory institutions need to wake up and smell the vitamin D!
The following is an approximate copy of a letter I sent to the Institute of Medicine, regarding their forthcoming vitamin D recommendations.
Thank you for the opportunity to express my opinions regarding the forthcoming determination by the Institute of Medicine as to whether the current recommended daily allowance of vitamin D should be revised to a higher level. In my opinion, the decision will be one of the most important in the annals of medicine, as it could positively or negatively affect the health of millions in the US. We have, as a society, ceased to spend as much time in the sunlight as we once did. This is due to our habits of working indoors and scrupulously avoiding sunlight when we venture outdoors. In consequence, we have become critically deficient in vitamin D, a potent steroid hormone whose chemical receptors are found throughout the body. Vitamin D levels are declining in the US population,[1] and that does not bode well for the health US citizens. It has been estimated that maintaining serum levels 25(OH)D of 55 ng/ml could prevent 85,000 cases of breast cancer and 60,000 cases of colon cancer.[2] If there were no other source of vitamin D, achieving that serum level would require the ingestion of about 5,500 IU of vitamin D3 daily for men and slightly less for women. It is obvious that the current recommendations of 400 IU are woefully inadequate.
In addition, sudden death from heart attack is about 2.4 times higher in men with the lowest levels of vitamin D compared to those with the highest levels.[3] It would be possible to go through a long list of diseases that correlate closely to vitamin D deficiency, such as MS, osteoporosis, twenty major cancers, hypertension, arthritis, Lupus, etc., but that would be laborious for both of us. My book, Vitamin D3 and Solar Power, has 800 references to the medical/scientific literature and discusses the influence of vitamin D on more than 100 diseases and conditions.
One double-blind, placebo controlled, interventional study has already determined that four years of vitamin D and calcium supplementation correlated to a 60-77% reduced risk of all cancers in women.[4] The researchers have just received a $4,000,000 grant to continue that research with higher dosages of vitamin D. Science often demands that such studies be conducted before any changes in recommendations are made. However, this may cause delays in action that could cost millions of lives. No such study could ever be attempted among smokers. Such a study would require that half of a group of non-smokers was given cigarettes, taught to smoke and then compared with the other half for death rates. Such a study was never done to furnish conclusive proof that smoking increased the risk of lung cancer. The reasons: (1) it would not have been ethical, and (2) the evidence from observation made the conclusion obvious and compelling. In my opinion, the evidence for higher vitamin D recommendations, either as supplementation or as sunlight exposure, is just as compelling. The researchers in the aforementioned cancer study for instance, stated that the reduction in cancer produced by vitamin D supplementation was about twice that which would be expected if all women stopped smoking.[4]
We cannot afford to wait for more studies to find conclusive proof of the need for higher supplemental recommendations while millions more people die. There is not one whit of evidence that vitamin D supplementation of 10,000 IU per day for an adult is toxic.[5]
I also suggest that you recommend regular, non-burning sunlight exposure as the most natural way to achieve optimal levels of vitamin D.
Marc Sorenson, EdD
[1] Looker, A. et al. Serum 25-hydroxyvitamin D status of the US population: 1988-1994 compared with 2000-2004. Am J Clin Nutr December 2008; vol 88: pp 1519-1527.
[2]Garland, C et al. What is the dose-response relationship between vitamin D and cancer risk? Nutrition Reviews 2007;65:S91-5.
[3]Giovannucci, E. et al. 25-hydroxy-vitamin D and risk of myocardial infarction in men. Ann Intern Med 2008;168:1174-80.
[4]Lappe, J. et al. Vitamin D and calcium supplementation reduces cancer risk: results of a randomized trial. Am J Clin Nutr 2007;85:1586–91.
[5]Vieth, R. Vitamin D supplementation, 25-hydroxyvitamin D concentrations and safety. Am J Clin Nutr 1999;69:842-56.
Thank you for the opportunity to express my opinions regarding the forthcoming determination by the Institute of Medicine as to whether the current recommended daily allowance of vitamin D should be revised to a higher level. In my opinion, the decision will be one of the most important in the annals of medicine, as it could positively or negatively affect the health of millions in the US. We have, as a society, ceased to spend as much time in the sunlight as we once did. This is due to our habits of working indoors and scrupulously avoiding sunlight when we venture outdoors. In consequence, we have become critically deficient in vitamin D, a potent steroid hormone whose chemical receptors are found throughout the body. Vitamin D levels are declining in the US population,[1] and that does not bode well for the health US citizens. It has been estimated that maintaining serum levels 25(OH)D of 55 ng/ml could prevent 85,000 cases of breast cancer and 60,000 cases of colon cancer.[2] If there were no other source of vitamin D, achieving that serum level would require the ingestion of about 5,500 IU of vitamin D3 daily for men and slightly less for women. It is obvious that the current recommendations of 400 IU are woefully inadequate.
In addition, sudden death from heart attack is about 2.4 times higher in men with the lowest levels of vitamin D compared to those with the highest levels.[3] It would be possible to go through a long list of diseases that correlate closely to vitamin D deficiency, such as MS, osteoporosis, twenty major cancers, hypertension, arthritis, Lupus, etc., but that would be laborious for both of us. My book, Vitamin D3 and Solar Power, has 800 references to the medical/scientific literature and discusses the influence of vitamin D on more than 100 diseases and conditions.
One double-blind, placebo controlled, interventional study has already determined that four years of vitamin D and calcium supplementation correlated to a 60-77% reduced risk of all cancers in women.[4] The researchers have just received a $4,000,000 grant to continue that research with higher dosages of vitamin D. Science often demands that such studies be conducted before any changes in recommendations are made. However, this may cause delays in action that could cost millions of lives. No such study could ever be attempted among smokers. Such a study would require that half of a group of non-smokers was given cigarettes, taught to smoke and then compared with the other half for death rates. Such a study was never done to furnish conclusive proof that smoking increased the risk of lung cancer. The reasons: (1) it would not have been ethical, and (2) the evidence from observation made the conclusion obvious and compelling. In my opinion, the evidence for higher vitamin D recommendations, either as supplementation or as sunlight exposure, is just as compelling. The researchers in the aforementioned cancer study for instance, stated that the reduction in cancer produced by vitamin D supplementation was about twice that which would be expected if all women stopped smoking.[4]
We cannot afford to wait for more studies to find conclusive proof of the need for higher supplemental recommendations while millions more people die. There is not one whit of evidence that vitamin D supplementation of 10,000 IU per day for an adult is toxic.[5]
I also suggest that you recommend regular, non-burning sunlight exposure as the most natural way to achieve optimal levels of vitamin D.
Marc Sorenson, EdD
[1] Looker, A. et al. Serum 25-hydroxyvitamin D status of the US population: 1988-1994 compared with 2000-2004. Am J Clin Nutr December 2008; vol 88: pp 1519-1527.
[2]Garland, C et al. What is the dose-response relationship between vitamin D and cancer risk? Nutrition Reviews 2007;65:S91-5.
[3]Giovannucci, E. et al. 25-hydroxy-vitamin D and risk of myocardial infarction in men. Ann Intern Med 2008;168:1174-80.
[4]Lappe, J. et al. Vitamin D and calcium supplementation reduces cancer risk: results of a randomized trial. Am J Clin Nutr 2007;85:1586–91.
[5]Vieth, R. Vitamin D supplementation, 25-hydroxyvitamin D concentrations and safety. Am J Clin Nutr 1999;69:842-56.
Friday, March 6, 2009
When is the safest time to sun tan?
I have never believed that the advice to stay out of the sunlight at midday was correct. Now, science is beginning to agree with me. Dr. J Moan and colleagues have explained that vitamin D production by the skin is much greater at midday than in early morning or late afternoon, and that the risk of developing melanoma is also much less at midday.[1]
This is thoroughly explained in my book; a greater percentage of UVA, which can cause damage to the lower layers of the skin, is available in the sunlight in the morning hours. A greater percentage of UVB that stimulates vitamin D production is available at midday. Therefore, the greatest potential for healthful D production and the least potential for damage occur at midday. The researchers stated it thusly: “To get an optimal vitamin D supplement from the sun at a minimal risk of getting cutaneous malignant melanoma (CMM), the best time of sun exposure is noon. Thus, common health recommendations given by authorities in many countries, that sun exposure should be avoided for three to five hours around noon and postponed to the afternoon may be wrong and may even promote CMM.”
Let’s face it. Nearly everything we have been told by the sunscare/sunscreen industry is false. And remember that people who are regularly in the sunlight develop fewer melanomas than those who are cloistered indoors, as I have discussed in my previous posts. Another author has written a book called “Naked at Noon.” Sounds like she is on to something!
[1] Moan, J et al. At what time should one go out in the sun? Adv Exp Med Biol. 2008;624:86-8.
This is thoroughly explained in my book; a greater percentage of UVA, which can cause damage to the lower layers of the skin, is available in the sunlight in the morning hours. A greater percentage of UVB that stimulates vitamin D production is available at midday. Therefore, the greatest potential for healthful D production and the least potential for damage occur at midday. The researchers stated it thusly: “To get an optimal vitamin D supplement from the sun at a minimal risk of getting cutaneous malignant melanoma (CMM), the best time of sun exposure is noon. Thus, common health recommendations given by authorities in many countries, that sun exposure should be avoided for three to five hours around noon and postponed to the afternoon may be wrong and may even promote CMM.”
Let’s face it. Nearly everything we have been told by the sunscare/sunscreen industry is false. And remember that people who are regularly in the sunlight develop fewer melanomas than those who are cloistered indoors, as I have discussed in my previous posts. Another author has written a book called “Naked at Noon.” Sounds like she is on to something!
[1] Moan, J et al. At what time should one go out in the sun? Adv Exp Med Biol. 2008;624:86-8.
Labels:
safety,
tan tanning,
time,
vitamin D,
vitamin D deficiency
Thursday, February 26, 2009
Can vitamin D prevent the common cold in asthmatics?
New research shows that people with the lowest vitamin D blood levels are about one-third more likely to catch an upper respiratory tract infection (cold) than those with the highest levels[1] (the “high” vitamin D group, however was nowhere near optimal levels). This study is no surprise, considering the research that I posted earlier on this blog regarding colds and flu.[2] There is something that makes this research different, however. Among asthmatics, the risk of catching cold was 5.7 times higher in the people with the lowest levels of vitamin D.
One of my previous posts already discussed the profound correlation of low vitamin D levels to asthma.[3] With all of the suffering asthmatics must go through, an upper respiratory tract infection is not something that needs to be added to it. The evidence indicates that the risk of both asthma and colds can be reduced substantially by maintaining high levels of vitamin D. Act accordingly!
[1] Ginde, A. et al. Association Between Serum 25-Hydroxyvitamin D Level and Upper Respiratory Tract Infection in the Third National Health and Nutrition Examination Survey ARCH INTERN MED;169:4:384-90.
[2] http://drsorenson.blogspot.com/2008/12/vitamin-d-immune-system-and-yearly.html
[3] http://drsorenson.blogspot.com/2008/12/vitamin-d-flu-and-immune-system-part-2.html
One of my previous posts already discussed the profound correlation of low vitamin D levels to asthma.[3] With all of the suffering asthmatics must go through, an upper respiratory tract infection is not something that needs to be added to it. The evidence indicates that the risk of both asthma and colds can be reduced substantially by maintaining high levels of vitamin D. Act accordingly!
[1] Ginde, A. et al. Association Between Serum 25-Hydroxyvitamin D Level and Upper Respiratory Tract Infection in the Third National Health and Nutrition Examination Survey ARCH INTERN MED;169:4:384-90.
[2] http://drsorenson.blogspot.com/2008/12/vitamin-d-immune-system-and-yearly.html
[3] http://drsorenson.blogspot.com/2008/12/vitamin-d-flu-and-immune-system-part-2.html
Labels:
asthma,
colds,
flu,
vitamin D,
vitamin D deficiency
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