生物
类有机物
壁细胞
细胞命运测定
细胞生物学
祖细胞
内皮干细胞
基因调控网络
细胞
转录因子
Notch信号通路
干细胞
计算生物学
基因
信号转导
基因表达
遗传学
体外
作者
Marina Nikolova,Zhisong He,Makiko Seimiya,Gustav Jonsson,Wuji Cao,Ryo Okuda,Reiner Wimmer,Ryoko Okamoto,Jonas M. Nikoloff,Petra S. Dittrich,Josef Penninger,J. Gray Camp,Barbara Treutlein
出处
期刊:Cell
[Cell Press]
日期:2025-04-17
卷期号:188 (12): 3329-3348.e31
被引量:36
标识
DOI:10.1016/j.cell.2025.03.037
摘要
Human blood vessel organoids (hBVOs) have emerged as a system to model human vascular development and disease. Here, we use single-cell multi-omics together with genetic and signaling pathway perturbations to reconstruct hBVO development. Mesodermal progenitors bifurcate into endothelial and mural fates in vitro, and xenografted BVOs acquire definitive arteriovenous endothelial cell specification. We infer a gene regulatory network and use single-cell genetic perturbations to identify transcription factors (TFs) and receptors involved in cell fate specification, including a role for MECOM in endothelial and mural specification. We assess the potential of BVOs to generate organotypic states, identify TFs lacking expression in hBVOs, and find that induced LEF1 overexpression increases brain vasculature specificity. Finally, we map vascular disease-associated genes to hBVO cell states and analyze an hBVO model of diabetes. Altogether, we provide a comprehensive cell state atlas of hBVO development and illuminate the power and limitation of hBVOs for translational research.
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