皮肤中维生素D的光合作用:环境和生活方式变量的影响。

Federation proceedings Pub Date : 1987-04-01
M F Holick
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引用次数: 0

摘要

阳光照射继续在为世界上大多数人提供充足的维生素D营养方面发挥着重要作用,包括那些生活在强化乳制品、人造黄油和谷物产品中维生素D的国家的人。在阳光照射下,高能紫外线光子(290-315 nm)穿透表皮,将7-脱氢胆固醇(维生素D3原)光解成维生素D3原。维生素D3原一旦形成,就会经历一个热诱导异构化成维生素D3的过程,这个过程需要2-3天才能完成。黑色素有效地与维生素D3原竞争进入表皮的紫外线辐射,并限制其光解为维生素D3原。然而,这并不是阻止经常暴露在阳光下的人的皮肤过量产生维生素D的主要因素。在最初暴露在阳光下时,维生素D3原被有效地转化为维生素D3原。然而,由于维生素D3原具有光敏感性,持续暴露在阳光下会导致维生素D3原异构化,主要是成脂醇。因此,不超过初始维生素D3原浓度的10-20%最终成为维生素D3原。衰老、防晒霜、季节变化、一天中的时间和纬度也会显著影响皮肤产生这种维生素激素。
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Photosynthesis of vitamin D in the skin: effect of environmental and life-style variables.

Exposure to sunlight continues to play a major role in providing adequate vitamin D nutrition for most of the population of the world, including those who live in countries that practice fortification of dairy, margarine, and cereal products with vitamin D. During exposure to sunlight, the high-energy UV photons (290-315 nm) penetrate the epidermis and photolyze 7-dehydrocholesterol (provitamin D3) to previtamin D3. Once formed, previtamin D3 undergoes a thermally induced isomerization to vitamin D3 that takes 2-3 days to reach completion. Melanin effectively competes with provitamin D3 for the UV radiation that enters the epidermis and limits its photolysis to previtamin D3. However, this is not the major factor that prevents excess production of vitamin D in the skin of people who are constantly exposed to sunlight. During the initial exposure to sunlight, provitamin D3 is efficiently converted to previtamin D3. However, because previtamin D3 is photolabile, continued exposure to sunlight causes the isomerization of previtamin D3, principally to lumisterol. Thus, no more than 10-20% of the initial provitamin D3 concentrations ultimately end up as previtamin D3. Aging, sunscreens, seasonal changes, time of day, and latitude also significantly affect the cutaneous production of this vitamin-hormone.

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