诱导多能干细胞
视网膜
细胞生物学
内皮干细胞
生物
干细胞
人诱导多能干细胞
视网膜
内皮
血-视网膜屏障
电池类型
神经科学
细胞分化
表型
周细胞
糖尿病性视网膜病变
干细胞疗法
胚胎干细胞
单元格排序
免疫学
细胞
血管生成
解剖
再生医学
血管生成
化学
作者
Ying-Yu Lin,Parker J. Esswein,Lucas Ramirez,Emily Warren,Julian Nicenboim,Sharon Gerecht
标识
DOI:10.1038/s41551-026-01712-9
摘要
Retinal microvascular diseases involve a compromised inner blood–retina barrier (iBRB), which remains poorly understood. A renewable source of human iBRB endothelium is thus vital for advancing eye research and treatment development. Here we differentiated human induced pluripotent stem cells into retinal endothelial cells (iRECs) via the Wnt–β-catenin pathway, namely Norrin–Frizzled4 signalling. These iRECs show genetic, protein and functional fidelity as well as unique retinal features. When injected into oxygen-induced retinopathy mice, iRECs integrated into the host vascular network and revascularized the ischaemic eye, rescuing the tissue. In microphysiological models, iRECs form perfusable microvascular networks that recapitulate iBRB morphology and phenotype in both healthy and diabetic states while also physiologically organizing and interacting with induced pluripotent stem cell-derived retinal pericytes. Our study establishes functional human iRECs and microphysiological iBRB models that facilitate mechanistic studies aimed at identifying therapeutic targets and promoting the revascularization of injured retinas, thereby supporting treatment advancement. Treatment of induced pluripotent stem cells with Norrin and vitronectin, and subsequent cell sorting and maturation, generates retinal-like endothelial cells that can regenerate retinal vasculature in an oxygen-induced retinopathy mouse and recapitulate enhanced inner blood–retinal barrier properties when co-cultured with retinal-like pericytes.
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