周细胞
糖尿病性视网膜病变
医学
疾病
血-视网膜屏障
病理生理学
视网膜病变
表型
视网膜
生物信息学
病理
神经科学
糖尿病
癌症研究
生物
内皮干细胞
体外
眼科
内分泌学
基因
遗传学
作者
Thomas L. Maurissen,Alena J. Spielmann,Gabriella Schellenberg,Marc Bickle,José Ricardo Vieira,Si Ying Lai,Georgios Pavlou,Sascha Fauser,Peter D. Westenskow,Roger D. Kamm,Héloïse Ragelle
标识
DOI:10.1038/s41467-024-45456-z
摘要
Abstract Diabetic retinopathy (DR) is a microvascular disorder characterized by inner blood-retinal barrier (iBRB) breakdown and irreversible vision loss. While the symptoms of DR are known, disease mechanisms including basement membrane thickening, pericyte dropout and capillary damage remain poorly understood and interventions to repair diseased iBRB microvascular networks have not been developed. In addition, current approaches using animal models and in vitro systems lack translatability and predictivity to finding new target pathways. Here, we develop a diabetic iBRB-on-a-chip that produces pathophysiological phenotypes and disease pathways in vitro that are representative of clinical diagnoses. We show that diabetic stimulation of the iBRB-on-a-chip mirrors DR features, including pericyte loss, vascular regression, ghost vessels, and production of pro-inflammatory factors. We also report transcriptomic data from diabetic iBRB microvascular networks that may reveal drug targets, and examine pericyte-endothelial cell stabilizing strategies. In summary, our model recapitulates key features of disease, and may inform future therapies for DR.
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