首页> 外文期刊>Skin pharmacology and physiology >The missing link--light-induced (280-1,600 nm) free radical formation in human skin.
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The missing link--light-induced (280-1,600 nm) free radical formation in human skin.

机译:缺少的环节-人类皮肤中光诱导的(280-1,600 nm)自由基形成。

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The recent European recommendation on the efficacy of sunscreen products requests now a minimum ratio of UVA/UVB protection. However, the visible and the infrared (IR) parts of the sun spectrum have received little attention concerning their possible contribution to skin damage. A common biophysical answer for the different wavelengths of the sun spectrum can be found in the creation of excess free radicals - mainly reactive oxygen species (ROS). Thanks to electron spin resonance spectroscopy applied to skin biopsies, we determined for the first time the free radical action spectrum covering UV and visible light (280-700 nm). Convolution of the action spectrum with sunlight spectral irradiance showed that 50% of the total skin oxidative burden was generated by visible light. Creation of ROS by visible light was experimentally confirmed by varying the illuminance of a spotlight. We also evidenced the creation of excess free radicals by near-IR radiation. In that case, free radical generation does not depend exclusively on the dose, but also on the skin temperature increase initiated by near-IR light. Some phenomena which are still unclear, such as the question about the deleterious or beneficial role of sunlight, are reviewed, implying the research on new protection strategies for the prevention of skin cancer.
机译:欧洲最近对防晒产品功效的建议现在要求最小比例的UVA / UVB保护。但是,太阳光谱的可见和红外(IR)部分对皮肤损害的可能影响很少受到关注。关于太阳光谱不同波长的常见生物物理学答案可以在产生过多的自由基(主要是活性氧(ROS))中找到。由于将电子自旋共振光谱法应用于皮肤活检,我们首次确定了覆盖紫外线和可见光(280-700 nm)的自由基作用谱。作用光谱与日光光谱辐照度的卷积表明,可见光产生了总皮肤氧化负荷的50%。通过改变聚光灯的照度,实验证实了可见光产生的ROS。我们还证明了近红外辐射会产生过多的自由基。在那种情况下,自由基的产生不仅取决于剂量,还取决于近红外光引发的皮肤温度升高。综述了一些尚不清楚的现象,例如关于阳光的有害作用或有益作用的问题,这意味着人们正在研究预防皮肤癌的新保护策略。

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