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紫外线A照射下脂肪酸和磷脂产生的单线态氧的光学检测。

Optical detection of singlet oxygen produced by fatty acids and phospholipids under ultraviolet A irradiation.

作者信息

Baier Jürgen, Maisch Tim, Regensburger Johannes, Pöllmann Claudia, Bäumler Wolfgang

机构信息

University of Regensburg, Department of Dermatology, 93042 Regensburg, Germany.

出版信息

J Biomed Opt. 2008 Jul-Aug;13(4):044029. doi: 10.1117/1.2960553.

Abstract

Ultraviolet A (UVA) radiation has been known to generate reactive oxygen species, such as singlet oxygen, in skin, leading to the oxidation of lipids and proteins. This oxidation influences cellular metabolism and can trigger cellular signaling cascades, since cellular membranes and the stratum corneum contain a substantial amount of fatty acids and lipids. Using highly sensitive IR-photomultiplier technology, we investigated the generation of singlet oxygen by fatty acids and lipids. In combination with their oxidized products, the fatty acids or lipids produced singlet oxygen under UVA radiation at 355 nm that is directly shown by luminescence detection. Linolenic or arachidonic acid showed the strongest luminescence signals, followed by linoleic acid and docohexaenoic acid. The amount of singlet oxygen induced by lipids such as phosphatidylcholine was significantly higher compared to the corresponding fatty acids within phospholipids. This result indicates a synergistic process of oxygen radicals and singlet oxygen during irradiation. UVA radiation initiates singlet oxygen generation, which subsequently oxidizes other fatty acids that in turn produce additional singlet oxygen. This leads to an enhancement of UVA-induced damage of fatty acids and lipids, which must enhance the oxidative damages in cells.

摘要

已知紫外线A(UVA)辐射会在皮肤中产生活性氧,如单线态氧,导致脂质和蛋白质氧化。这种氧化会影响细胞代谢,并能触发细胞信号级联反应,因为细胞膜和角质层含有大量脂肪酸和脂质。我们使用高灵敏度红外光电倍增管技术研究了脂肪酸和脂质产生单线态氧的情况。脂肪酸或脂质与其氧化产物相结合,在355nm的UVA辐射下产生单线态氧,这通过发光检测直接显示出来。亚麻酸或花生四烯酸发出的发光信号最强,其次是亚油酸和二十二碳六烯酸。与磷脂中的相应脂肪酸相比,磷脂酰胆碱等脂质诱导产生的单线态氧量明显更高。这一结果表明在辐照过程中氧自由基和单线态氧存在协同作用。UVA辐射引发单线态氧的产生,随后单线态氧会氧化其他脂肪酸,而这些脂肪酸又会产生更多的单线态氧。这会导致UVA诱导的脂肪酸和脂质损伤加剧,进而必然会增强细胞中的氧化损伤。

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