n -乙酰半胱氨酸改善Bardet-Biedl综合征10型小鼠视网膜电图b波丢失

Tyler J Rankin, Sara Mayer, Joseph G Laird, Brianna Lobeck, Emily Kalmanek, Arlene V Drack
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摘要

Bardet-Biedl综合征(BBS)是一种罕见的常染色体隐性遗传病,以视网膜变性导致失明为特征。本研究利用小鼠BBS10模型研究了氧自由基清除剂n -乙酰半胱氨酸(NAC)改善BBS相关视网膜变性的疗效。BBS是由BBS基因突变引起的,其蛋白质产物与纤毛功能有关;突变或缺失的BBS10蛋白会破坏BBSome蛋白复合物的组装,扰乱纤毛运输,导致光感受器细胞功能障碍和死亡。光感受器功能可以使用视网膜电图(ERG)进行评估,解剖可以使用光学相干断层扫描(OCT)和组织学来评估随时间的进行性变性。本研究利用Bbs10 -/-小鼠来评估NAC补充对视网膜变性的影响。结果表明,NAC补充改善了视网膜外核层(ONL)在OCT上的进行性变性,并减轻了Bbs10 -/-小鼠b波ERG表型的丧失。ERG b波是由视网膜双极细胞与光感受器突触后产生的,光感受器在光照射下被超极化。减少b波缺失表型可能表明突触功能得到改善。突触染色显示b波电正性缺失与突触前终末定位错误之间存在相关性,这突出了突触完整性对视网膜功能的重要性。这些发现表明NAC是一种有希望的治疗干预bbs10相关的视网膜变性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
N-Acetylcysteine Ameliorates Loss of the Electroretinogram b-wave in a Bardet-Biedl Syndrome Type 10 Mouse Model.

Bardet-Biedl Syndrome (BBS) is a rare autosomal recessive disorder characterized by retinal degeneration leading to blindness. This study investigates the therapeutic efficacy of N-Acetylcysteine (NAC), an oxygen free radical scavenger, in ameliorating retinal degeneration associated with BBS using a murine model of BBS10. BBS is caused by mutations in BBS genes, the protein products of which are involved in ciliary function; mutant or absent BBS10 protein disrupts the assembly of the BBSome protein complex, disturbing ciliary trafficking and leading to photoreceptor cell dysfunction and death. Photoreceptor function can be assessed using the electroretinogram (ERG), and anatomy can be assessed using optical coherence tomography (OCT) and histology to demonstrate progressive degeneration over time. This study utilizes Bbs10 -/- mice to assess the effect of NAC supplementation on retinal degeneration. Results reveal that NAC supplementation ameliorates the progressive degeneration of the retinal outer nuclear layer (ONL) on OCT and mitigates the loss-of-b-wave ERG phenotype observed in Bbs10 -/- mice. The ERG b-wave is generated by retinal bipolar cells after synapsing with photoreceptors which have been hyperpolarized by light exposure. Reducing the loss-of-b-wave phenotype may indicate improved synaptic function. Synaptic staining demonstrates a correlation between the absence of an electropositive b-wave and mislocalized presynaptic terminals, highlighting the significance of synaptic integrity for retinal function. These findings suggest NAC as a promising therapeutic intervention for managing BBS10-related retinal degeneration.

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