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首页> 外文期刊>Journal of neurobiology >Light-induced rod and cone cell death and regeneration in the adult albino zebrafish (Danio rerio) retina.
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Light-induced rod and cone cell death and regeneration in the adult albino zebrafish (Danio rerio) retina.

机译:成年的白化斑马鱼(Danio rerio)视网膜中光诱导的杆状细胞和视锥细胞死亡和再生。

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摘要

Light-induced photoreceptor cell degeneration has been studied in several species, but not extensively in the teleost fish. Furthermore, the continual production of rods and cones throughout the teleost's life may result in regeneration of lost rods and cones. We exposed adult albino zebrafish to 7 days of constant darkness, followed by 7 days of constant 8000 lux light, followed by 28 days of recovery in a 14-h light:10-h dark cycle. We characterized the resulting photoreceptor layer cell death and subsequent regeneration using immunohistochemistry and light microscopy. Within the first 24 h of constant light, the zebrafish retina exhibited widespread rod and cone cell apoptosis. High levels of cell proliferation within the inner nuclear layer (INL) were observed within the first 3 days of constant light, as assessed by immunodetection of proliferating cell nuclear antigen and BrdU labeling. The proliferating cells within the INL were closely associated with the radial processes of Muller glia, similar to the pluripotent retinal stem cells observed during embryonic development. Using antibodies generated against the individual zebrafish opsins, we determined that rods and the green, blue, and ultraviolet cone cells were replaced within the 28 day recovery period. While both rods and cones were replaced, the well-ordered cone cell mosaic was not reestablished. Copyright 2000 John Wiley & Sons, Inc.
机译:光诱导的感光细胞变性已经在几种物种中进行了研究,但在硬骨鱼中没有进行广泛的研究。此外,在硬骨鱼的整个生命周期中持续生产杆和锥可能会导致丢失的杆和锥再生。我们将成年的白化斑马鱼暴露在持续7天的黑暗中,然后暴露在持续8000 lux光照下7天,然后在14小时光照:10小时黑暗周期中恢复28天。我们使用免疫组织化学和光学显微镜表征了导致的感光层细胞死亡和随后的再生。在恒定光照的最初24小时内,斑马鱼视网膜表现出广泛的杆和视锥细胞凋亡。通过免疫检测增殖细胞核抗原和BrdU标记评估,在恒定光照的前三天内观察到了内核层(INL)内高水平的细胞增殖。 INL中的增殖细胞与穆勒胶质细胞的放射状过程密切相关,类似于胚胎发育过程中观察到的多能性视网膜干细胞。使用针对个别斑马鱼视蛋白产生的抗体,我们确定在28天的恢复期内替换了视杆和绿色,蓝色和紫外线视锥细胞。更换了杆和锥时,没有重建秩序良好的锥细胞镶嵌体。版权所有2000 John Wiley&Sons,Inc.

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