内皮细胞 Piezo2 缺乏会影响肺血管生成并导致肺动脉高压。

IF 6.9 1区 医学 Q1 PERIPHERAL VASCULAR DISEASE Hypertension Pub Date : 2025-01-06 DOI:10.1161/HYPERTENSIONAHA.124.22948
Feng Wei, Ziying Lin, Wenju Lu, Haiyun Luo, Huazhuo Feng, Shiyun Liu, Chenting Zhang, Yulin Zheng, Chen Jiyuan, Shaocong Mo, Chen Wang, Zizhou Zhang, Wei Feng, Junqi Zhu, Qifeng Yang, Min Du, Weiguo Kong, Aofeng Liu, Jiaxuan Lai, Xiang Li, Xuefen Wu, Ning Lai, Yuqin Chen, Kai Yang, Jian Wang
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引用次数: 0

摘要

背景:机械敏感的Piezo1通道在肺动脉高压(PH)中起关键作用。然而,Piezo2在PH中的作用尚不清楚。方法:内皮细胞(EC)特异性敲除Piezo2 (Piezo2flox/flox, Tek-Cre+;使用Piezo2EC-/-)大鼠和主要培养的肺微血管内皮细胞来确定Piezo2在PH中的作用。结果:对公开获取的单细胞rna测序数据集的数据分析发现,特发性肺动脉高压患者肺内皮细胞中Piezo2的显著下调,这在缺氧或单氯乙酸诱导的PH大鼠模型中的肺/内皮细胞中得到证实。与野生型大鼠相比,Piezo2EC-/-大鼠在缺氧诱导的PH和单苦参碱诱导的PH下均表现出PH升高,血流动力学和组织学变化恶化。Piezo2EC-/-大鼠表现出肺微血管的急剧丧失,这与肺微血管内皮细胞内游离钙浓度([Ca2+]i)降低和血管内皮生长因子受体2 (VEGFR2)和血清反应因子(SRF)磷酸化的下调有关。敲除Piezo2或用钙螯合剂EDTA处理会损害肺微血管内皮细胞的管形成和迁移能力,通过补充额外的钙可以恢复。富含亚油酸的红花油日粮可增强Piezo2的稳定性和功能,有效缓解缺氧诱导的PH大鼠模型的PH发展。结论:本研究表明,通过抑制肺血管内皮细胞中[Ca2+]i/磷酸化的SRF/VEGFR2信号轴,ec特异性敲除Piezo2至少部分地加剧了PH的发病机制。Piezo2的靶向活化可能是治疗PH的一种新的有效策略。
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Deficiency of Endothelial Piezo2 Impairs Pulmonary Vascular Angiogenesis and Predisposes Pulmonary Hypertension.

Background: Mechanosensitive Piezo1 channel plays a key role in pulmonary hypertension (PH). However, the role of Piezo2 in PH remains unclear.

Methods: Endothelial cell (EC)-specific Piezo2 knockout (Piezo2flox/flox, Tek-Cre+; Piezo2EC-/-) rats and primarily cultured pulmonary microvascular ECs were used to determine the role of Piezo2 in PH.

Results: Data analysis of publicly accessible single-cell RNA-sequencing data sets uncovered significant downregulation of Piezo2 in lung ECs from patients with idiopathic pulmonary arterial hypertension, which was verified in the lungs/ECs from PH rat models induced by hypoxia or monocrotaline. Comparing to wild-type rats, Piezo2EC-/- rats exhibited exacerbated PH in both hypoxia-induced PH and monocrotaline-induced PH, characterized by the worsened hemodynamical and histological changes. Piezo2EC-/- rats showed dramatic loss of pulmonary microvessels, in association with the decreased intracellular free calcium concentration ([Ca2+]i) and downregulation of VEGFR2 (vascular endothelial growth factor receptor 2) and phosphorylated SRF (serum response factor) in pulmonary microvascular ECs. Knockout of Piezo2 or treatment with a calcium chelator, EDTA, impaired the ability of tube formation and migration in pulmonary microvascular ECs, which was restored by supplementation of extra calcium. A safflower oil diet rich in linoleic acid, which can enhance the stability and function of Piezo2, effectively alleviated PH development in a hypoxia-induced PH rat model.

Conclusions: This study demonstrates that EC-specific knockout of Piezo2 exacerbates PH pathogenesis, at least partially, through the suppression of [Ca2+]i/phosphorylated SRF/VEGFR2 signaling axis in pulmonary vascular ECs. Targeted activation of Piezo2 could be a novel effective strategy for the treatment of PH.

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来源期刊
Hypertension
Hypertension 医学-外周血管病
CiteScore
15.90
自引率
4.80%
发文量
1006
审稿时长
1 months
期刊介绍: Hypertension presents top-tier articles on high blood pressure in each monthly release. These articles delve into basic science, clinical treatment, and prevention of hypertension and associated cardiovascular, metabolic, and renal conditions. Renowned for their lasting significance, these papers contribute to advancing our understanding and management of hypertension-related issues.
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