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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Retinal cone and rod photoreceptor cells exhibit differential susceptibility to light-induced damage.
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Retinal cone and rod photoreceptor cells exhibit differential susceptibility to light-induced damage.

机译:视网膜视锥和视杆感光细胞对光诱导的损伤表现出不同的敏感性。

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摘要

All-trans-retinal and its condensation-products can cause retinal degeneration in a light-dependent manner and contribute to the pathogenesis of human macular diseases such as Stargardt's disease and age-related macular degeneration. Although these toxic retinoid by-products originate from rod and cone photoreceptor cells, the contribution of each cell type to light-induced retinal degeneration is unknown. In this study, the primary objective was to learn whether rods or cones are more susceptible to light-induced, all-trans-retinal-mediated damage. Previously, we reported that mice lacking enzymes that clear all-trans-retinal from the retina, ATP-binding cassette transporter 4 and retinol dehydrogenase 8, manifested light-induced retinal dystrophy. We first examined early-stage age-related macular degeneration patients and found retinal degenerative changes in rod-rich rather than cone-rich regions of the macula. We then evaluated transgenic mice with rod-only and cone-like-only retinas in addition to progenies of such mice inbred with Rdh8(-/-) Abca4(-/-) mice. Of all these strains, Rdh8(-/-) Abca4(-/-) mice with a mixed rod-cone population showed the most severe retinal degeneration under regular cyclic light conditions. Intense light exposure induced acute retinal damage in Rdh8(-/-) Abca4(-/-) and rod-only mice but not cone-like-only mice. These findings suggest that progression of retinal degeneration in Rdh8(-/-) Abca4(-/-) mice is affected by differential vulnerability of rods and cones to light.
机译:全反式视网膜及其缩合产物可以以光依赖的方式引起视网膜变性,并有助于人类黄斑疾病的发病机理,如斯塔加特氏病和与年​​龄有关的黄斑变性。尽管这些有毒的类维生素A副产物来源于视杆和视锥细胞,但每种细胞类型对光诱导的视网膜变性的贡献尚不清楚。在这项研究中,主要目的是了解视杆或视锥细胞是否更容易受到光诱导的全跨视网膜介导的损伤。以前,我们报道小鼠缺乏从视网膜清除全反式视网膜的酶,ATP结合盒转运蛋白4和视黄醇脱氢酶8,表现出光诱导的视网膜营养不良。我们首先检查了与年龄相关的早期黄斑变性患者,发现黄斑富杆区而不是视锥区的视网膜退行性改变。然后,我们评估了除具有Rdh8(-/-)Abca4(-/-)小鼠近交后代的子代外,还具有仅杆状和仅圆锥状视网膜的转基因小鼠。在所有这些菌株中,具有混合的视锥细胞的Rdh8(-/-)Abca4(-/-)小鼠在规则的周期性光照条件下显示出最严重的视网膜变性。强烈的光线照射在Rdh8(-/-)Abca4(-/-)和仅棒状小鼠中引起急性视网膜损伤,但不包括仅圆锥状小鼠。这些发现表明,Rdh8(-/-)Abca4(-/-)小鼠视网膜变性的进展受视杆和视锥细胞对光的不同脆弱性的影响。

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