Department of Cell and Developmental Biology, Perelman School of Medicine at the University of Pennsylvania, 1114 Biomedical Research Building, 421 Curie Boulevard, Philadelphia, PA 19104, USA.
Development. 2023 Aug 15;150(16). doi: 10.1242/dev.200271. Epub 2023 Aug 28.
The vasculature consists of vessels of different sizes that are arranged in a hierarchical pattern. Two cell populations work in concert to establish this pattern during embryonic development and adopt it to changes in blood flow demand later in life: endothelial cells that line the inner surface of blood vessels, and adjacent vascular mural cells, including smooth muscle cells and pericytes. Despite recent progress in elucidating the signalling pathways controlling their crosstalk, much debate remains with regard to how mural cells influence endothelial cell biology and thereby contribute to the regulation of blood vessel formation and diameters. In this Review, I discuss mural cell functions and their interactions with endothelial cells, focusing on how these interactions ensure optimal blood flow patterns. Subsequently, I introduce the signalling pathways controlling mural cell development followed by an overview of mural cell ontogeny with an emphasis on the distinguishing features of mural cells located on different types of blood vessels. Ultimately, I explore therapeutic strategies involving mural cells to alleviate tissue ischemia and improve vascular efficiency in a variety of diseases.
脉管系统由不同大小的血管组成,这些血管呈层级排列。在胚胎发育过程中,有两种细胞群体协同作用来建立这种模式,并在生命后期适应血流需求的变化:内皮细胞排列在血管的内表面,以及相邻的血管壁细胞,包括平滑肌细胞和周细胞。尽管最近在阐明控制它们相互作用的信号通路方面取得了进展,但关于壁细胞如何影响内皮细胞生物学并有助于调节血管形成和直径仍存在许多争议。在这篇综述中,我讨论了壁细胞的功能及其与内皮细胞的相互作用,重点介绍了这些相互作用如何确保最佳的血流模式。随后,我介绍了控制壁细胞发育的信号通路,接着概述了壁细胞的个体发生,重点介绍了位于不同类型血管上的壁细胞的区别特征。最后,我探讨了涉及壁细胞的治疗策略,以减轻组织缺血并提高各种疾病中的血管效率。