首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Medaka (Oryzias latipes) Embryo as a Model for the Screening of Compounds that Counteract the Damage Induced by Ultraviolet and High-Energy Visible Light
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Medaka (Oryzias latipes) Embryo as a Model for the Screening of Compounds that Counteract the Damage Induced by Ultraviolet and High-Energy Visible Light

机译:Medaka(Oryzias LaTipes)胚胎作为筛选化合物的模型抵消紫外线和高能可见光诱导的损伤

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摘要

Continuous overexposure to sunlight increases its harmful effects on the skin. For this reason, there is a growing need to characterize economic models more representative of the negative effects and counteracting responses that irradiation causes on human skin. These models will serve for the screening of protective compounds against damage caused by ultraviolet (UV) and high energy visible light (HEV). Therefore, two common in vitro models employed for sunlight irradiation studies, namely human keratinocyte HaCat culture and reconstructed human epidermis (RHE), were compared with the medaka fish embryo model, traditionally used in other scientific disciplines. Using suberythemal doses of UVA and HEV to determine the level of Reactive Oxygen Species (ROS) generation and thymine dimers formed by UVB, we show that medaka embryo responds with a lower damage level, more comparable to human skin, than the other two models, probably due to the protective mechanisms that work in a complete organism. In the same way, the protective effects of antioxidant compounds have the greatest effect on medaka embryos. Taken together, these findings suggest that medaka embryos would be a good alternative in vitro model for sunlight effect studies, and for the screening of molecules with counteracting capacity against the damage caused by UV and HEV.
机译:阳光连续过度曝光会增加其对皮肤的有害影响。因此,越来越需要表征经济模型,更多代表的负面影响和抵消辐照引起人体皮肤的反应。这些模型将用于筛选保护化合物免受紫外(UV)和高能可见光(HEV)引起的损伤。因此,与麦克卡鱼胚胎模型进行比较了用于阳光照射研究的两个用于阳光照射研究,即人角蛋白酶培养培养和重建的人表皮(RHE),传统上用于其他科学学科。使用Suberythemal剂量的UVA和HEV来确定通过UVB形成的活性氧物质(ROS)生成和胸腺嘧啶二聚体的水平,我们表明Medaka胚胎的损伤水平较低,与人体皮肤更媲美,而不是其他两种型号,可能是由于在完全有机体中工作的保护机制。以同样的方式,抗氧化剂化合物的保护作用对Medaka胚胎产生了最大的影响。这些研究结果表明,Medaka胚胎将是阳光效果研究的良好替代方案,以及抗uv和hev造成的损害能力的分子筛选。

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