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强健的圆锥介导信号持续存在,直到视杆细胞退化后期。

Robust cone-mediated signaling persists late into rod photoreceptor degeneration.

机构信息

Department of Neurobiology, Duke University School of Medicine, Durham, United States.

Department of Statistical Science, Duke University, Durham, United States.

出版信息

Elife. 2022 Aug 30;11:e80271. doi: 10.7554/eLife.80271.

Abstract

Rod photoreceptor degeneration causes deterioration in the morphology and physiology of cone photoreceptors along with changes in retinal circuits. These changes could diminish visual signaling at cone-mediated light levels, thereby limiting the efficacy of treatments such as gene therapy for rescuing normal, cone-mediated vision. However, the impact of progressive rod death on cone-mediated signaling remains unclear. To investigate the fidelity of retinal ganglion cell (RGC) signaling throughout disease progression, we used a mouse model of rod degeneration (). Despite clear deterioration of cone morphology with rod death, cone-mediated signaling among RGCs remained surprisingly robust: spatiotemporal receptive fields changed little and the mutual information between stimuli and spiking responses was relatively constant. This relative stability held until nearly all rods had died and cones had completely lost well-formed outer segments. Interestingly, RGC information rates were higher and more stable for natural movies than checkerboard noise as degeneration progressed. The main change in RGC responses with photoreceptor degeneration was a decrease in response gain. These results suggest that gene therapies for rod degenerative diseases are likely to prolong cone-mediated vision even if there are changes to cone morphology and density.

摘要

杆状光感受器的退化导致与视网膜回路变化同时出现的锥状光感受器的形态和功能的恶化。这些变化可能会降低在锥状介导的光水平下的视觉信号,从而限制基因治疗等治疗方法的效果,以挽救正常的锥状介导视觉。然而,进行性杆状细胞死亡对锥状介导的信号的影响尚不清楚。为了研究视网膜神经节细胞(RGC)信号在整个疾病进展过程中的保真度,我们使用了一种杆状细胞退化的小鼠模型()。尽管随着杆状细胞死亡,锥状细胞的形态明显恶化,但 RGC 之间的锥状介导的信号仍然令人惊讶地强大:时空感受野变化很小,刺激和尖峰反应之间的互信息相对恒定。这种相对稳定性一直保持到几乎所有的杆状细胞都已经死亡,并且锥状细胞完全失去了形态良好的外节。有趣的是,随着退行性变的进展,RGC 信息率对于自然电影比棋盘格噪声更高且更稳定。随着光感受器的退化,RGC 反应的主要变化是反应增益降低。这些结果表明,即使锥状细胞形态和密度发生变化,针对杆状细胞退行性疾病的基因治疗也可能延长锥状介导的视觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ab0/9560159/f2154eedadf4/elife-80271-fig1.jpg

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