生物
平衡
神经丛
解剖
灌注
细胞生物学
神经科学
内科学
医学
作者
Chen Yuan Kam,I. Singh,David G. Gonzalez,Catherine Matte-Martone,Paloma Solá,Guiomar Solanas,Júlia Bonjoch,Edward Marsh,Karen K. Hirschi,Valentina Greco
出处
期刊:Cell
[Elsevier]
日期:2023-05-01
卷期号:186 (11): 2345-2360.e16
被引量:8
标识
DOI:10.1016/j.cell.2023.04.017
摘要
A functional network of blood vessels is essential for organ growth and homeostasis, yet how the vasculature matures and maintains homeostasis remains elusive in live mice. By longitudinally tracking the same neonatal endothelial cells (ECs) over days to weeks, we found that capillary plexus expansion is driven by vessel regression to optimize network perfusion. Neonatal ECs rearrange positions to evenly distribute throughout the developing plexus and become positionally stable in adulthood. Upon local ablation, adult ECs survive through a plasmalemmal self-repair response, while neonatal ECs are predisposed to die. Furthermore, adult ECs reactivate migration to assist vessel repair. Global ablation reveals coordinated maintenance of the adult vascular architecture that allows for eventual network recovery. Lastly, neonatal remodeling and adult maintenance of the skin vascular plexus are orchestrated by temporally restricted, neonatal VEGFR2 signaling. Our work sheds light on fundamental mechanisms that underlie both vascular maturation and adult homeostasis in vivo.
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