Division of Pulmonary Medicine, Boston Children's Hospital, Harvard Medical School, Boston, MA, USA.
Stanford Cardiovascular Institute; Department of Medicine, Stanford University, Stanford, CA, 94305, USA.
EMBO Rep. 2024 Feb;25(2):616-645. doi: 10.1038/s44319-023-00054-w. Epub 2024 Jan 19.
Vascular remodeling is the process of structural alteration and cell rearrangement of blood vessels in response to injury and is the cause of many of the world's most afflicted cardiovascular conditions, including pulmonary arterial hypertension (PAH). Many studies have focused on the effects of vascular endothelial cells and smooth muscle cells (SMCs) during vascular remodeling, but pericytes, an indispensable cell population residing largely in capillaries, are ignored in this maladaptive process. Here, we report that hypoxia-inducible factor 2α (HIF2α) expression is increased in the lung tissues of PAH patients, and HIF2α overexpressed pericytes result in greater contractility and an impaired endothelial-pericyte interaction. Using single-cell RNAseq and hypoxia-induced pulmonary hypertension (PH) models, we show that HIF2α is a major molecular regulator for the transformation of pericytes into SMC-like cells. Pericyte-selective HIF2α overexpression in mice exacerbates PH and right ventricular hypertrophy. Temporal cellular lineage tracing shows that HIF2α overexpressing reporter NG2+ cells (pericyte-selective) relocate from capillaries to arterioles and co-express SMA. This novel insight into the crucial role of NG2+ pericytes in pulmonary vascular remodeling via HIF2α signaling suggests a potential drug target for PH.
血管重构是血管对损伤的结构改变和细胞重排的过程,是世界上许多最常见的心血管疾病的原因,包括肺动脉高压(PAH)。许多研究集中在血管内皮细胞和平滑肌细胞(SMCs)在血管重构过程中的作用,但周细胞,一种主要存在于毛细血管中的不可或缺的细胞群体,在这个适应性过程中被忽视了。在这里,我们报告 HIF2α 在 PAH 患者的肺组织中表达增加,并且过表达 HIF2α 的周细胞导致更大的收缩性和内皮-周细胞相互作用受损。使用单细胞 RNAseq 和缺氧诱导的肺动脉高压(PH)模型,我们表明 HIF2α 是周细胞向平滑肌样细胞转化的主要分子调节剂。在小鼠中,周细胞选择性过表达 HIF2α 会加剧 PH 和右心室肥厚。时间细胞谱系追踪显示,过表达报告 NG2+ 细胞(周细胞选择性)的 HIF2α 从毛细血管重新定位到小动脉,并共同表达 SMA。通过 HIF2α 信号,这种对 NG2+ 周细胞在肺血管重构中关键作用的新认识提示了 PH 的潜在药物靶点。