Key Laboratory of Medical Electrophysiology of Ministry of Education and Medical Electrophysiological Key Lab of Sichuan Province, Collaborative Innovation Center for Prevention and Treatment of Cardiovascular Disease, Institute of Cardiovascular Research, Southwest Medical University, Luzhou, 646000 Sichuan, China.
Biomed Res Int. 2022 Jul 31;2022:9377965. doi: 10.1155/2022/9377965. eCollection 2022.
Vascular repair upon injury is a frequently encountered pathology in cardiovascular diseases, which is crucial for the maintenance of arterial homeostasis and function. Stem/progenitor cells located on vascular walls have multidirectional differentiation potential and regenerative ability. It has been demonstrated that stem/progenitor cells play an essential role in the basic medical research and disease treatment. The dynamic microenvironment around the vascular wall stem/progenitor cells (VW-S/PCs) possesses many stem cell niche-like characteristics to support and regulate cells' activities, maintaining the properties of stem cells. Under physiological conditions, vascular homeostasis is a cautiously balanced and efficient interaction between stem cells and the microenvironment. These interactions contribute to the vascular repair and remodeling upon vessel injury. However, the signaling mechanisms involved in the regulation of microenvironment on stem cells remain to be further elucidated. Understanding the functional characteristics and potential mechanisms of VW-S/PCs is of great significance for both basic and translational research. This review underscores the microenvironment-derived signals that regulate VW-S/PCs and aims at providing new targets for the treatment of related cardiovascular diseases.
血管损伤后的修复是心血管疾病中常见的病理学现象,对于维持动脉的内稳态和功能至关重要。位于血管壁上的干细胞/祖细胞具有多向分化潜能和再生能力。研究表明,干细胞/祖细胞在基础医学研究和疾病治疗中发挥着重要作用。血管壁干细胞/祖细胞(VW-S/PCs)周围的动态微环境具有许多类似于干细胞龛的特征,能够支持和调节细胞的活动,维持干细胞的特性。在生理条件下,血管内稳态是干细胞和微环境之间谨慎平衡和高效的相互作用,这种相互作用有助于血管损伤后的修复和重塑。然而,调节微环境对干细胞的信号机制仍有待进一步阐明。了解 VW-S/PCs 的功能特征和潜在机制对基础研究和转化研究都具有重要意义。本综述强调了调节 VW-S/PCs 的微环境衍生信号,旨在为相关心血管疾病的治疗提供新的靶点。