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内皮细胞Piezo1促进大动脉上血管平滑肌细胞的分化。

Endothelial cell Piezo1 promotes vascular smooth muscle cell differentiation on large arteries.

作者信息

Abello Javier, Yin Ying, Zhao Yonghui, Maurer Josh, Lee Jihui, Bodell Cherokee, Clevenger Abigail J, Burton Zarek, Goeckel Megan E, Lin Michelle, Grainger Stephanie, Halabi Carmen M, Raghavan Shreya A, Sah Rajan, Stratman Amber N

机构信息

Department of Cell Biology and Physiology, Washington University in St. Louis School of Medicine, St. Louis, MO, USA.

Department of Internal Medicine, Cardiovascular Division, Washington University School of Medicine, St. Louis, MO, USA.

出版信息

bioRxiv. 2024 Jun 12:2024.06.11.598539. doi: 10.1101/2024.06.11.598539.

Abstract

Vascular stabilization is a mechanosensitive process, in part driven by blood flow. Here, we demonstrate the involvement of the mechanosensitive ion channel, Piezo1, in promoting arterial accumulation of vascular smooth muscle cells (vSMCs) during zebrafish development. Using a series of small molecule antagonists or agonists to temporally regulate Piezo1 activity, we identified a role for the Piezo1 channel in regulating levels and altered targeting of vSMCs between arteries and veins. Increasing Piezo1 activity suppressed and increased vSMC association with the cardinal vein, while inhibition of Piezo1 activity increased levels and decreased vSMC association with arteries. We supported the small molecule data with genetic suppression of and in zebrafish, resulting in loss of vSMCs on the dorsal aorta. Further, endothelial cell (EC)-specific knockout in mice was sufficient to decrease vSMC accumulation along the descending dorsal aorta during development, thus phenocopying our zebrafish data, and supporting functional conservation of Piezo1 in mammals. To determine mechanism, we used modeling assays to demonstrate that differential sensing of pulsatile versus laminar flow forces across endothelial cells changes the expression of mural cell differentiation genes. Together, our findings suggest a crucial role for EC Piezo1 in sensing force within large arteries to mediate mural cell differentiation and stabilization of the arterial vasculature.

摘要

血管稳定是一个机械敏感过程,部分由血流驱动。在这里,我们证明了机械敏感离子通道Piezo1在斑马鱼发育过程中促进血管平滑肌细胞(vSMC)在动脉中的积累。通过使用一系列小分子拮抗剂或激动剂来暂时调节Piezo1活性,我们确定了Piezo1通道在调节vSMC水平以及改变其在动脉和静脉之间的靶向定位方面的作用。增加Piezo1活性会抑制并增加vSMC与主静脉的关联,而抑制Piezo1活性则会增加vSMC水平并减少其与动脉的关联。我们通过在斑马鱼中对Piezo1进行基因抑制来支持小分子数据,结果导致背主动脉上的vSMC缺失。此外,在小鼠中进行内皮细胞(EC)特异性Piezo1基因敲除足以在发育过程中减少沿降主动脉背侧的vSMC积累,从而模拟了我们在斑马鱼中的数据,并支持了Piezo1在哺乳动物中的功能保守性。为了确定机制,我们使用建模分析来证明,内皮细胞对脉动流与层流力的差异感知会改变壁细胞分化基因的表达。总之,我们的研究结果表明,EC Piezo1在感知大动脉内的力以介导壁细胞分化和动脉血管系统稳定方面起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18de/11195244/528ecf6dcacd/nihpp-2024.06.11.598539v1-f0001.jpg

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