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Toxicology of the retina: advances in understanding the defence mechanisms and pathogenesis of drug- and light-induced retinopathy.

机译:视网膜毒理学:在理解药物和光诱导性视网膜病的防御机制和发病机理方面的进展。

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摘要

The neurosensory retina is a highly specialized sense organ that is subjected to constant exposure of systemic toxins, oxidative stress and focused light rays. Important advances have been made in recent decades in unravelling a myriad of defence mechanisms against such insults and consequently in improving the understanding of the principles underlying various drug- and light-induced disease processes. To defend against circulating toxins, the retina possesses a specialized blood-retinal barrier (BRB) that tightly regulates the transport of substances across the functional boundaries of the retina at the retinal capillaries and the retinal pigmented epithelium. An endogenous cytochrome p450 system is strategically located within the retina to neutralize agents that can diffuse through the BRB. The biooxidation effect of light is prevented by a wide array of unique antioxidant mechanisms in the retina. Nonetheless, pathological processes may evolve when these different lines of defence are overwhelmed by various xenobiotics, environmental agents such as cigarette smoke and excessive light exposure, particularly of short wavelength high frequency blue light and ultraviolet light. Latest research using transgenic models has revealed novel apoptotic pathways implicated in acute phototoxicity, in particular blue light damage, and provides important clues for further understanding the risks of high-frequency light exposure to human retinopathy. This review article summarizes the basic scientific principles of these different defence mechanisms and discuss the implications in pathophysiology and treatment.
机译:神经感觉视网膜是高度专业化的感觉器官,会不断暴露于全身毒素,氧化应激和聚焦光线。在最近几十年中,在阐明针对此类侮辱的无数防御机制并因此提高对各种药物和光诱导疾病过程的基本原理的理解方面,已经取得了重要进展。为了抵御循环毒素,视网膜具有专门的血视网膜屏障(BRB),该屏障可严格调节物质在视网膜毛细血管和视网膜色素上皮细胞上跨视网膜功能边界的运输。内源性细胞色素p450系统策略性地位于视网膜内,以中和可通过BRB扩散的药物。视网膜中多种独特的抗氧化机制可防止光的生物氧化作用。但是,当这些不同的防御线被各种异生物素,诸如香烟烟雾之类的环境因素和过多的光暴露(尤其是短波长高频蓝光和紫外线)淹没时,病理过程可能会演变。使用转基因模型的最新研究揭示了涉及急性光毒性(尤其是蓝光损伤)的新型凋亡途径,并为进一步了解高频光暴露于人类视网膜病变的风险提供了重要线索。这篇综述文章总结了这些不同防御机制的基本科学原理,并讨论了其在病理生理学和治疗中的意义。

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