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首页> 外文期刊>The Journal of Experimental Biology >Light-induced degeneration and microglial response in the retina of an epibenthonic pigmented teleost: age-dependent photoreceptor susceptibility to cell death
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Light-induced degeneration and microglial response in the retina of an epibenthonic pigmented teleost: age-dependent photoreceptor susceptibility to cell death

机译:上皮下色素硬骨膜视网膜上的光诱导变性和小胶质细胞反应:年龄依赖性感光细胞死亡的敏感性

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Constant intense light causes apoptosis of photoreceptors in the retina of albino fish. However, very few studies have been performed on pigmented species. Tench (Tinca tinca) is a teleost inhabiting dimly lit environments that has a predominance of rods within the photoreceptor layer. To test the hypothesis that constant high intensity light can result in retinal damage in such pigmented epibenthonic teleost species, photodegeneration of the retina was investigated in the larvae and in juveniles of tench to assess whether any damage may also be dependent on fish age. We exposed both groups of animals to 5 days of constant darkness, followed by 4 days of constant 20,000 lx light, and then by 6 days of recovery in a 14 h light:10 h dark cycle. The results showed that the retina of the larvae group exhibited abundant photoreceptor cell apoptosis during the time of exposition to intense light, whereas that of juveniles was indifferent to it. Damaged retinas showed a strong TUNEL signal in photoreceptor nuclei, and occasionally a weak cytoplasmic TUNEL signal in Müller glia. Specific labelling of microglial cells with Griffonia simplicifolia lectin (GSL) histochemistry revealed that photoreceptor cell death alerts microglia in the degenerating retina, leading to local proliferation, migration towards the injured outer nuclear layer (ONL), and enhanced phagocytosis of photoreceptor debris. During the first days of intense light treatment, Müller cells phagocytosed dead photoreceptor cells but, once microglial cells became activated, there was a progressive increase in the phagocytic capacity of the microglia.
机译:持续不断的强光会引起白化鱼视网膜中感光细胞的凋亡。但是,关于色素种类的研究很少。 Tench(Tinca tinca)是一种硬骨鱼类,栖息在光线昏暗的环境中,在感光层中主要存在杆。为了检验这样的假设,即恒定的高强度光会在这种色素上皮的硬骨鱼硬骨鱼类中造成视网膜损伤,在幼虫和and的幼体中研究了视网膜的光变性,以评估是否任何损伤也可能取决于鱼龄。我们将两组动物都暴露于5天持续的黑暗中,然后持续4天持续20,000 lx光照,然后在14小时光照:10小时黑暗周期中恢复6天。结果表明,幼虫组的视网膜在暴露于强光下表现出丰富的感光细胞凋亡,而幼虫的视网膜对此无动于衷。受损的视网膜在感光细胞核中显示出很强的TUNEL信号,偶尔在Müller胶质细胞中也显示出弱的细胞质TUNEL信号。 Griffonia simplicifolia lectin(GSL)组织化学对小胶质细胞的特异性标记显示,感光细胞死亡提示退化的视网膜中的小胶质细胞,导致局部增殖,向受伤的外核层(ONL)迁移,并增强了感光细胞碎片的吞噬作用。在强光治疗的头几天,Müller细胞吞噬了死亡的感光细胞,但是一旦激活了小胶质细胞,小胶质细胞的吞噬能力就会逐渐增加。

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