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暴露于白色或单色光下的Wistar大鼠视网膜中、、、和mRNA表达谱。

Profiles of , , , and mRNA expression in Wistar rat retinas exposed to white or monochromatic light.

作者信息

Ziółkowska Natalia, Lewczuk Bogdan

机构信息

Department of Histology and Embryology, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Olsztyn, Poland.

出版信息

Front Neuroanat. 2022 Aug 18;16:956000. doi: 10.3389/fnana.2022.956000. eCollection 2022.

Abstract

Despite concern over potential retinal damage linked to exposure to light-emitting-diode (LED) light (particularly blue light), it remains unknown how exposure to low-intensity monochromatic LED light affects the expression of rhodopsin (, a photopigment that mediates light-induced retinal degeneration), melanopsin (, a blue-light sensitive photopigment), (associated with retinal damage/degeneration), and (anti-apoptotic). This study investigated the mRNA expression profiles of these genes under exposure to white and monochromatic light (blue, red, green) in the retinas of albino rats under a cycle of 12 h of light and 12 h of darkness. In each group, 32 Wistar rats were exposed to one type of monochromatic-LED or white-fluorescent light for 7 day (150 lx). Retinal samples were taken for qPCR analysis and light and electron microscopy. Blue and green light exposure markedly decreased expression of and mRNA and increased expression of and mRNA ( < 0.05). In retinas from the blue-light group, loss and vesiculation of photoreceptor outer segments were visible, but not in retinas from the red-light and control group. Measurements of the photoreceptor inner and outer segments length revealed, that this length was significantly decreased in the blue- and green-light exposure groups ( < 0.02), but not in the red-light exposure group. Increased expression of and decreased expression of and after exposure to blue and green light may be early responses that help to reduce light-induced retinal damage.

摘要

尽管人们担心暴露于发光二极管(LED)光(特别是蓝光)可能会对视网膜造成损害,但低强度单色LED光照射如何影响视紫红质(一种介导光诱导视网膜变性的光色素)、黑视蛋白(一种对蓝光敏感的光色素)、与视网膜损伤/变性相关的基因以及抗凋亡基因的表达仍不清楚。本研究调查了在12小时光照和12小时黑暗循环条件下,白化大鼠视网膜在白光和单色光(蓝光、红光、绿光)照射下这些基因的mRNA表达谱。每组32只Wistar大鼠暴露于一种单色LED光或白色荧光灯下7天(150勒克斯)。采集视网膜样本进行qPCR分析以及光学和电子显微镜检查。蓝光和绿光照射显著降低了视紫红质和黑视蛋白mRNA的表达,并增加了与视网膜损伤/变性相关基因和抗凋亡基因mRNA的表达(P<0.05)。在蓝光组的视网膜中,可以看到光感受器外段的丢失和空泡化,但在红光组和对照组的视网膜中没有。光感受器内段和外段长度的测量结果显示,蓝光和绿光照射组的该长度显著缩短(P<0.02),但红光照射组没有。蓝光和绿光照射后与视网膜损伤/变性相关基因表达增加以及视紫红质和黑视蛋白表达降低可能是有助于减轻光诱导视网膜损伤的早期反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1de3/9434339/35c27bb663ea/fnana-16-956000-g001.jpg

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