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脂肪酸和维生素在中波紫外线照射下会产生单线态氧。

Fatty acids and vitamins generate singlet oxygen under UVB irradiation.

机构信息

Department of Dermatology, University of Regensburg, Regensburg, Germany.

出版信息

Exp Dermatol. 2012 Feb;21(2):135-9. doi: 10.1111/j.1600-0625.2011.01414.x.

Abstract

UVB radiation is already known as initiator and promoter of carcinogenesis in skin. UVB is well absorbed in proteins and DNA leading to products such as cyclobutane pyrimidine dimers. In contrast, UVA radiation generates reactive oxygen species such as singlet oxygen, which can initiate a variety of cellular damages and cellular signalling. It was the goal to investigate whether and to which extent UVB radiation is additionally able to cause oxidative damages via singlet oxygen. Potential endogenous photosensitizers such as vitamin B molecules or unsaturated fatty acids were irradiated in solution using monochromatic UVB radiation at 308 nm. Singlet oxygen was directly detected and quantified by its luminescence at 1270 nm. All investigated endogenous photosensitizers showed clear singlet oxygen signals with a quantum yield ranging from 5 to 40%. UVB radiation altered the photosensitizer molecules during irradiation yielding a change of absorption in the entire ultraviolet spectrum (280-400 nm). UVB irradiation of endogenous photosensitizers produced singlet oxygen that in turn changes the absorption of those molecules. Being an important prerequisite, the changed absorption may either reduce or increase singlet oxygen production. An increase in singlet oxygen generation may initiate a vicious cycle that has the potential to amplify UVB- or UVA-mediated effects in skin cells.

摘要

UVB 辐射已被认为是皮肤致癌作用的启动子和促进剂。UVB 能很好地被蛋白质和 DNA 吸收,导致环丁烷嘧啶二聚体等产物的形成。相比之下,UVA 辐射会产生活性氧物质,如单线态氧,这可能引发多种细胞损伤和细胞信号转导。本研究旨在探讨 UVB 辐射是否以及在何种程度上能够通过单线态氧引起氧化损伤。潜在的内源性光敏剂,如维生素 B 分子或不饱和脂肪酸,在溶液中用 308nm 的单色 UVB 辐射进行辐照。单线态氧通过其在 1270nm 的发光直接被检测和定量。所有被研究的内源性光敏剂都显示出明显的单线态氧信号,量子产率范围为 5%至 40%。UVB 辐射在辐照过程中改变了光敏剂分子,导致整个紫外线光谱(280-400nm)的吸收发生变化。内源性光敏剂的 UVB 辐照产生了单线态氧,进而改变了这些分子的吸收。作为一个重要的前提条件,这种改变的吸收可能会减少或增加单线态氧的产生。单线态氧生成的增加可能会引发一个恶性循环,从而有可能放大 UVB 或 UVA 在皮肤细胞中的介导作用。

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