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首页> 外文期刊>Biochemical and Biophysical Research Communications >Real-time chemiluminescent imaging and detection of reactive oxygen species generated in the UVB-exposed human skin equivalent model.
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Real-time chemiluminescent imaging and detection of reactive oxygen species generated in the UVB-exposed human skin equivalent model.

机译:UVB暴露的人体皮肤等效模型中产生的实时化学发光成像和检测活性氧物种。

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摘要

The objective of this study is to image and detect reactive oxygen species (ROS) generated in the UVB-exposed three-dimensional human skin equivalent model (HSEM), EpiDermtrade mark 200, because the alternative system needs to be urgently established as a replacement for the skin of experimental animals. Evidence that the ROS generation is enhanced in the skin of live animals after the UVB exposure was already obtained, by using the real-time chemiluminescent (RT-CL) method consisting of a sensitive CL probe (CLA) and an ultra-low light imaging apparatus. In this study, CL emission due to the reaction of CLA with endogenously generated ROS increased significantly in the UVB-treated HSEM compared with that in the intact HSEM, the maximum level being observed at a dose of 27mJ/cm(2). ROS under UVB exposure was identified to be ()O2- and (1)O(2) as observed by suppressive effects of SOD and beta-carotene topically applied on sample surface before the UVB exposure. The results for UVB-induced ROS generation in HSEM were consistent with those observed in the skin of live animals. HSEM combined with the RT-CL method was shown to be useful system not only to predict UVB-induced ROS-related skin responses in human but also to find protective agents against UVB-stimulated oxidative stress in place of animals and ex vivo human skin.
机译:本研究的目的是在UVB暴露的三维人体皮肤等效模型(HSEM)中产生的反应性氧物质(ROS),因为需要迫切地建立替代品作为替代品实验动物的皮肤。通过使用由敏感的CL探针(CLA)和超低光成像,在已经获得UVB暴露后,在已经获得了UVB暴露后,在活体动物的皮肤中增强了ROS的证据。仪器。在该研究中,在UVB处理的HSEM中,CLA具有内源性产生的CLA的反应,与完整的HSEM中的内源显着增加,在27MJ / cm(2)的剂量下观察到的最大水平。根据UVB暴露在UVB暴露前的样品表面上局部施加在样品表面上的抑制作用,鉴定为()O 2和(1)O(1)o(2)的ROS。 HSEM中UVB诱导的ROS产生的结果与在活体皮肤中观察到的那些。 HSEM与RT-CL法相结合的是有用的系统,不仅是预测人类的UVB诱导的ROS相关的皮肤反应,而且还要发现针对UVB刺激的氧化应激的保护剂代替动物和离体人体皮肤。

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