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Triplet Excited Carbonyls and Singlet Oxygen Formation During Oxidative Radical Reaction in Skin

机译:皮肤氧化自由基反应过程中三重态激发的羰基和单态氧的形成

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摘要

The skin is the largest organ in the body and is consistently exposed to aggressive environmental attacks (biological/physical/chemical, etc.). Reactive oxygen species (ROS) are formed during the normal oxidative metabolism which enhances to a lethal level under stress conditions referred to as oxidative stress. While, under normal conditions, cells are capable of dealing with ROS using non-enzymatic and enzymatic defense system, it can lead to a critical damage to cell system via the oxidation of cellular components under stress condition. Lipid peroxidation is a well-established mechanism of cellular injury in all kinds of organisms and it is often used as an indicator of oxidative stress in cells and tissues. In the presence of metal ions, ROS such as hydrogen peroxide (H2O2) produces highly reactive hydroxyl radical (HO) via Fenton reaction. In the current study, we have used the porcine skin (intact pig ear/skin biopsies) as an ex vivo/in vitro model system to represent human skin. Experimental results have been presented on the participation of HO in the initiation of lipid peroxidation and thereby leading to the formation of reactive intermediates and the formation of electronically excited species eventually leading to ultra-weak photon emission (UPE). To understand the participation of different electronically excited species in the overall UPE, the effect of a scavenger of singlet oxygen (1O2) on photon emission in the visible and near-infrared region of the spectrum was measured which showed its contribution. In addition, measurement with interference filter with a transmission in the range of 340–540 nm reflected a substantial contribution of triplet carbonyls (3L=O) in the photon emission. Thus, it is concluded that during the oxidative radical reactions, the UPE is contributed by the formation of both 3L=O and 1O2. The method used in the current study is claimed to be a potential tool for non-invasive determination of the physiological and pathological state of human skin in dermatological research.
机译:皮肤是人体最大的器官,并且始终受到侵略性环境的攻击(生物/物理/化学等)。在正常的氧化代谢过程中会形成活性氧(ROS),在称为氧化应激的应激条件下会增加至致命水平。虽然在正常条件下,细胞能够使用非酶和酶防御系统处理ROS,但它可通过在压力条件下氧化细胞成分而对细胞系统造成严重损害。脂质过氧化是各种生物中公认的细胞损伤机制,通常被用作细胞和组织中氧化应激的指标。在金属离子的存在下,ROS(例如过氧化氢(H2O2))通过Fenton反应产生高反应性羟基(HO )。在当前的研究中,我们已使用猪皮肤(完整猪耳/皮肤活检组织)作为代表人体皮肤的离体/体外模型系统。实验结果表明HO 参与脂质过氧化反应的引发,从而导致反应性中间体的形成和电子激发物种的形成,最终导致超弱光子发射(UPE) )。为了了解不同电子激发物种在整个UPE中的参与,测量了单线态氧( 1 O2)清除剂对光谱的可见光和近红外区域中光子发射的影响,显示其贡献。此外,使用干涉滤光片在340–540 nm范围内的透射率进行测量,反映出三重态羰基( 3 L = O )在光子发射中的重要作用。因此,可以得出结论,在氧化自由基反应过程中,UPE是由 3 L = O 1 O2的形成贡献的。据称,本研究中使用的方法是皮肤病学研究中非侵入性确定人类皮肤的生理和病理状态的潜在工具。

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