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5-甲基四氢叶酸可被内源性光敏剂光降解。

5-Methyltetrahydrofolate can be photodegraded by endogenous photosensitizers.

机构信息

Department of Radiation Biology, Institute for Cancer Research, The Norwegian Radium Hospital, Oslo University Hospital, Montebello, 0310 Oslo, Norway.

出版信息

Free Radic Biol Med. 2009 Oct 15;47(8):1199-204. doi: 10.1016/j.freeradbiomed.2009.07.030. Epub 2009 Aug 6.

Abstract

Folate deficiency is linked to serious birth defects, pregnancy complications, male infertility, cardiovascular diseases, and even the evolution of human skin color. Conflicting data exist on whether exposure to sun or artificial UV sources may deplete the levels of blood folate in humans. Blood contains several photosensitizers and proteins, as well as antioxidants, which when exposed to UV radiation and visible light may be involved in the degradation of folate. In this study the photodegradation of 5-methyltetrahydrofolate (5MTHF) in aqueous and deuterious solutions exposed to UVB, UVA, or visible light in the absence or presence of riboflavin, uroporphyrin, and conjugated bilirubin was investigated by absorption spectroscopy. 5MTHF is stable under exposure to visible light and UVA radiation, whereas it is slowly photooxidized under UVB exposure. However, it is rapidly oxidized by UVA or visible radiation in the presence of riboflavin or uroporphyrin, but not in the presence of conjugated bilirubin, which acts in a protective manner. Reactive oxygen species produced in type I and/or type II reactions were involved. This study suggests that 5MTHF in blood can be photodegraded in the presence of the flavins and porphyrins, but protected by bilirubins. This may have health and evolutionary implications.

摘要

叶酸缺乏与严重的出生缺陷、妊娠并发症、男性不育、心血管疾病,甚至人类肤色的演变有关。关于暴露于阳光或人工紫外线源是否会耗尽人体血液中叶酸水平,存在相互矛盾的数据。血液中含有几种光敏剂和蛋白质,以及抗氧化剂,当暴露于紫外线辐射和可见光下时,它们可能参与叶酸的降解。在这项研究中,通过吸收光谱法研究了 5-甲基四氢叶酸(5MTHF)在水相和氘相溶液中的光降解,这些溶液在不存在或存在核黄素、尿卟啉和结合胆红素的情况下,分别暴露于 UVB、UVA 或可见光下。5MTHF 在可见光和 UVA 辐射下稳定,但在 UVB 暴露下会缓慢光氧化。然而,在核黄素或尿卟啉存在下,它会被 UVA 或可见光迅速氧化,但在结合胆红素存在下不会,结合胆红素起到保护作用。涉及到 I 型和/或 II 型反应中产生的活性氧物质。这项研究表明,在黄素和卟啉存在下,血液中的 5MTHF 可以被光降解,但可以被胆红素保护。这可能对健康和进化有影响。

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