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内皮细胞 Piezo1 通道介导脑血流的力反馈控制。

Endothelial Piezo1 channel mediates mechano-feedback control of brain blood flow.

机构信息

Department of Pharmacology, Larner College of Medicine, University of Vermont, Burlington, VT, USA.

Vermont Center for Cardiovascular and Brain Health, University of Vermont, Burlington, VT, USA.

出版信息

Nat Commun. 2024 Oct 7;15(1):8686. doi: 10.1038/s41467-024-52969-0.

Abstract

Hyperemia in response to neural activity is essential for brain health. A hyperemic response delivers O and nutrients, clears metabolic waste, and concomitantly exposes cerebrovascular endothelial cells to hemodynamic forces. While neurovascular research has primarily centered on the front end of hyperemia-neuronal activity-to-vascular response-the mechanical consequences of hyperemia have gone largely unexplored. Piezo1 is an endothelial mechanosensor that senses hyperemia-associated forces. Using genetic mouse models and pharmacologic approaches to manipulate endothelial Piezo1 function, we evaluated its role in blood flow control and whether it impacts cognition. We provide evidence of a built-in brake system that sculpts hyperemia, and specifically show that Piezo1 activation triggers a mechano-feedback system that promotes blood flow recovery to baseline. Further, genetic Piezo1 modification led to deficits in complementary memory tasks. Collectively, our findings establish a role for endothelial Piezo1 in cerebral blood flow regulation and a role in its behavioral sequelae.

摘要

神经活动引起的充血对于大脑健康至关重要。充血反应提供氧气和营养物质,清除代谢废物,同时使脑血管内皮细胞暴露于血流动力。虽然神经血管研究主要集中在充血-神经元活动-血管反应的前端,但充血的机械后果在很大程度上仍未得到探索。Piezo1 是一种内皮细胞机械感受器,可感知与充血相关的力。我们使用遗传小鼠模型和药理学方法来操纵内皮细胞 Piezo1 的功能,评估其在血流控制中的作用,以及它是否会影响认知。我们提供了一个内置的刹车系统来塑造充血的证据,特别是表明 Piezo1 的激活触发了一个机械反馈系统,促进血流恢复到基线。此外,遗传上修饰 Piezo1 会导致补充性记忆任务的缺陷。总的来说,我们的发现确立了内皮细胞 Piezo1 在脑血流调节中的作用及其在行为后果中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e72/11458797/fdf2146316b3/41467_2024_52969_Fig1_HTML.jpg

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