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成年斑马鱼视网膜再生中锥体-环功能的恢复。

Restoration of cone-circuit functionality in the regenerating adult zebrafish retina.

机构信息

CRTD - Center for Regenerative Therapies TU Dresden, CMCB, Technische Universität Dresden, Fetscherstraße 105, 01307 Dresden, Germany.

CMCB - Center for Molecular and Cellular Bioengineering, Technische Universität Dresden, Tatzberg 47-51, 01307 Dresden, Germany.

出版信息

Dev Cell. 2024 Aug 19;59(16):2158-2170.e6. doi: 10.1016/j.devcel.2024.07.005. Epub 2024 Aug 2.

DOI:10.1016/j.devcel.2024.07.005
PMID:39096897
Abstract

Unlike humans, teleosts like zebrafish exhibit robust retinal regeneration after injury from endogenous stem cells. However, it is unclear if regenerating cone photoreceptors regain physiological function and integrate correctly into post-synaptic circuits. We used two-photon calcium imaging of living adult retina to examine photoreceptor responses before and after light-induced lesions. To assess functional recovery of cones and downstream outer retinal circuits, we exploited color opponency; UV cones exhibit intrinsic Off-response to blue light, but On-response to green light, which depends on feedback signals from outer retinal circuits. Accordingly, we assessed the presence and quality of Off- vs. On-responses and found that regenerated UV cones regain both Off-responses to short-wavelength and On-responses to long-wavelength light within 3 months after lesion. Therefore, physiological circuit functionality is restored in regenerated cone photoreceptors, suggesting that inducing endogenous regeneration is a promising strategy for human retinal repair.

摘要

与人类不同,斑马鱼等硬骨鱼类在受到内源性干细胞的损伤后表现出强大的视网膜再生能力。然而,尚不清楚再生的视锥细胞是否能恢复生理功能并正确整合到突触后回路中。我们使用双光子钙成像技术对活体成年视网膜进行成像,在光诱导损伤前后检测感光细胞的反应。为了评估视锥细胞和下游外视网膜回路的功能恢复,我们利用了颜色对立性;UV 视锥细胞对蓝光表现出固有的 Off 反应,但对绿光表现出 On 反应,这取决于外视网膜回路的反馈信号。因此,我们评估了 Off 与 On 反应的存在和质量,发现再生的 UV 视锥细胞在损伤后 3 个月内既能恢复对短波长光的 Off 反应,也能恢复对长波长光的 On 反应。因此,再生视锥细胞的生理回路功能得以恢复,这表明诱导内源性再生是一种很有前途的人类视网膜修复策略。

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