首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Interaction of UV light-induced alpha-tocopherol radicals with lipids detected by an electron spin resonance prooxidation effect
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Interaction of UV light-induced alpha-tocopherol radicals with lipids detected by an electron spin resonance prooxidation effect

机译:紫外线诱导的α-生育酚自由基与脂质的相互作用,通过电子自旋共振促氧化作用检测

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The reaction rate constants of the interaction between light-induced alpha-tocopherol radicals with unsaturated lipids in a heterogeneous system compared to a homogeneous system are of the same order of magnitude. The decay rates of compartmentalized alpha-tocopherol radicals were significantly reduced by using negatively charged sodium dodecyl sulfate (SDS) micelles, A partially resolved electron spin resonance (ESR) hyperfine structure was observed under the conditions of both high lipid concentrations in comparison to the alpha-tocopherol concentration and of a regular distribution of alpha-tocopherol molecules inside the heterogeneous lipid structures. Alpha-tocopherol radicals have a considerable prooxidation potential at higher concentrations, Ascorbic acid dissolved in the aqueous medium provokes very fast alpha-tocopherol radical recycling through the boundary layer between the aqueous medium and micelles, By contrast, very slow reactions such as those of alpha-tocopherol radicals with glutathione through this boundary layer are measurable, Despite using the heterogeneous SDS micellar system, the decay kinetics of the alpha-tocopherol radical ESR signal is simply compounded, In addition to the known stabilization effect of cholesterol in membrane systems, cholesterol itself acts as a target molecule attacked by free radicals, e.g. alpha-tocopherol radicals. Using stratum corneum extracts that contain unsaturated lipids and cholesterol the alpha-tocopherol radical can prooxidatively react with these compounds, Using focused UV light generates a high radical yield in a relatively short time compared to the lifetime of the alpha-tocopherol radicals, The decay processes after radical induction can be characterized as consecutive reactions, The compartmentalization of radicals induced in SDS micelles and the close proximity of target molecules are essential if very slow one-electron reductions are to be measured. [References: 44]
机译:与均相系统相比,异质系统中光诱导的α-生育酚自由基与不饱和脂质之间相互作用的反应速率常数处于相同数量级。通过使用带负电荷的十二烷基硫酸钠(SDS)胶束,显着降低了间隔化的α-生育酚自由基的衰减速率。在两种高脂质浓度的条件下,与α相比,均观察到部分分辨的电子自旋共振(ESR)超精细结构-生育酚浓度和异质脂质结构内部的α-生育酚分子的规则分布。在较高浓度下,α-生育酚自由基具有相当大的促氧化潜能,溶于水介质中的抗坏血酸通过水介质与胶束之间的边界层引起非常快速的α-生育酚自由基循环,相比之下,非常缓慢的反应(例如α反应)尽管通过使用异质SDS胶束系统,带有谷胱甘肽的β-生育酚自由基是可以测量的,但α-生育酚自由基ESR信号的衰减动力学却被简单地合成。除了已知的胆固醇在膜系统中的稳定作用外,胆固醇本身充当被自由基攻击的目标分子,例如α-生育酚自由基。使用包含不饱和脂质和胆固醇的角质层提取物,α-生育酚自由基可以与这些化合物发生氧化反应。与α-生育酚自由基的寿命相比,使用聚焦的紫外线在相对较短的时间内即可产生较高的自由基产率。自由基诱导后可以表征为连续反应,如果要测量非常缓慢的单电子还原,则在SDS胶束中诱导的自由基的分隔和目标分子的紧密结合至关重要。 [参考:44]

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