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人视网膜和视网膜类器官中外丛状层发育的特征和分期。

Characterization and staging of outer plexiform layer development in human retina and retinal organoids.

机构信息

Department of Surgery, The Vision Center, Children's Hospital Los Angeles, Los Angeles, CA 90027, USA.

The Saban Research Institute, Children's Hospital Los Angeles, Los Angeles, CA 90027, USA.

出版信息

Development. 2021 Dec 1;148(23). doi: 10.1242/dev.199551. Epub 2021 Dec 8.

Abstract

The development of the first synapse of the visual system between photoreceptors and bipolar cells in the outer plexiform layer (OPL) of the human retina is crucial for visual processing but poorly understood. By studying the maturation state and spatial organization of photoreceptors, depolarizing bipolar cells and horizontal cells in the human fetal retina, we establish a pseudo-temporal staging system for OPL development that we term OPL-Stages 0 to 4. This was validated through quantification of increasingly precise subcellular localization of bassoon to the OPL with each stage (P<0.0001). By applying these OPL staging criteria to human retinal organoids (HROs) derived from human embryonic and induced pluripotent stem cells, we observed comparable maturation from OPL-Stage 0 at day 100 in culture up to OPL-Stage 3 by day 160. Quantification of presynaptic protein localization confirmed progression from OPL-Stage 0 to 3 (P<0.0001). Overall, this study defines stages of human OPL development through mid-gestation and establishes HROs as a model system that recapitulates key aspects of human photoreceptor-bipolar cell synaptogenesis in vitro.

摘要

人类视网膜外丛状层(OPL)中光感受器和双极细胞之间的第一个视觉系统突触的发育对视觉处理至关重要,但知之甚少。通过研究人类胎儿视网膜中光感受器、去极化双极细胞和水平细胞的成熟状态和空间组织,我们建立了一个 OPL 发育的假时间分期系统,我们称之为 OPL-Stages 0 到 4。这通过定量 bassoon 蛋白在每个阶段(P<0.0001)向 OPL 进行越来越精确的亚细胞定位得到验证。通过将这些 OPL 分期标准应用于源自人类胚胎和诱导多能干细胞的人视网膜类器官(HRO),我们观察到培养至 160 天时,从 OPL-Stage 0 到 OPL-Stage 3 的可比成熟度。突触前蛋白定位的定量分析证实了从 OPL-Stage 0 到 3 的进展(P<0.0001)。总的来说,本研究通过中期妊娠定义了人类 OPL 发育的阶段,并确立了 HRO 作为一种模型系统,体外再现了人类光感受器-双极细胞突触发生的关键方面。

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