Stapor Peter C, Sweat Richard S, Dashti Derek C, Betancourt Aline M, Murfee Walter Lee
Department of Biomedical Engineering, Tulane University, Lindy Boggs Center, New Orleans, La., USA.
J Vasc Res. 2014;51(3):163-74. doi: 10.1159/000362276. Epub 2014 May 17.
Therapies aimed at manipulating the microcirculation require the ability to control angiogenesis, defined as the sprouting of new capillaries from existing vessels. Blocking angiogenesis would be beneficial in many pathologies (e.g. cancer, retinopathies and rheumatoid arthritis). In others (e.g. myocardial infarction, stroke and hypertension), promoting angiogenesis would be desirable. We know that vascular pericytes elongate around endothelial cells (ECs) and are functionally associated with regulating vessel stabilization, vessel diameter and EC proliferation. During angiogenesis, bidirectional pericyte-EC signaling is critical for capillary sprout formation. Observations of pericytes leading capillary sprouts also implicate their role in EC guidance. As such, pericytes have recently emerged as a therapeutic target to promote or inhibit angiogenesis. Advancing our basic understanding of pericytes and developing pericyte-related therapies are challenged, like in many other fields, by questions regarding cell identity. This review article discusses what we know about pericyte phenotypes and the opportunity to advance our understanding by defining the specific pericyte cell populations involved in capillary sprouting.
旨在调控微循环的疗法需要具备控制血管生成的能力,血管生成被定义为从现有血管中长出新的毛细血管。阻断血管生成在许多病症(如癌症、视网膜病变和类风湿性关节炎)中是有益的。而在其他病症(如心肌梗死、中风和高血压)中,促进血管生成则是可取的。我们知道,血管周细胞围绕内皮细胞伸长,并在功能上与调节血管稳定性、血管直径和内皮细胞增殖相关。在血管生成过程中,周细胞与内皮细胞之间的双向信号传导对于毛细血管芽的形成至关重要。对引领毛细血管芽的周细胞的观察也表明它们在内皮细胞引导中发挥作用。因此,周细胞最近已成为促进或抑制血管生成的治疗靶点。与许多其他领域一样,关于细胞身份的问题给我们深入了解周细胞并开发与周细胞相关的疗法带来了挑战。这篇综述文章讨论了我们对周细胞表型的了解,以及通过定义参与毛细血管芽形成的特定周细胞群体来加深理解的机会。