Department of Medical Pharmacology and Physiology, University of Missouri and Dalton Cardiovascular Research Center, Columbia, MO 65212, USA.
Microcirculation. 2010 Apr;17(3):159-63. doi: 10.1111/j.1549-8719.2010.00028.x.
This edition of Microcirculation presents five current and emerging perspectives of the microcirculation in development, health, and disease. The onset of blood flow and pressure are central to cardiovascular development. These hemodynamic forces are explored in light of underlying molecular signaling pathways that affect vascular and cardiac cell shape and proliferation. Shear-induced strain exerted on the plasma membrane and cytoskeleton is transmitted to cell nuclei and thereby affects gene activation through mechanotransduction. Altered stiffness or disturbed surfaces of aberrant vascular cells may affect an array of vasculopathies through altered gene expression. The endothelium is both a site and source for inflammatory responses triggered by cardiovascular risk factors often mediated through reactive oxygen species and angiotensin II. Tumor microenvironments are disturbed with abnormal growth and remodeling of blood and lymphatic vessels. More effective targeting strategies for delivering anti-angiogenic and cytotoxic agents are being developed through advances in intravital imaging. Blood flow control requires both vasodilation and vasoconstriction to be coordinated along and among arterioles and feed arteries. Evolving insights into signaling pathways between smooth muscle cells and endothelial cells illuminate how such processes can be affected in vasculopathies. These timely reviews provide a novel reference for advancing research frontiers in microcirculation.
本期《微循环》呈现了五个目前和新兴的关于微循环在发育、健康和疾病中的观点。血流和压力的出现是心血管发育的核心。这些血流动力因素在探讨了影响血管和心脏细胞形状和增殖的潜在分子信号通路的背景下进行研究。作用在质膜和细胞骨架上的剪切应变通过机械转导传递到细胞核,从而影响基因激活。异常血管细胞的刚度改变或表面紊乱可能通过改变基因表达影响多种血管病变。内皮细胞既是心血管危险因素引发炎症反应的部位,也是炎症反应的来源,这些反应通常通过活性氧和血管紧张素 II 介导。肿瘤微环境受到干扰,血液和淋巴管的生长和重塑异常。通过活体成像技术的进步,正在开发更有效的靶向策略,以输送抗血管生成和细胞毒性药物。血流控制需要在小动脉和供养动脉中以及其间协调血管舒张和血管收缩。平滑肌细胞和内皮细胞之间信号通路的不断发展的认识阐明了这些过程在血管病变中是如何受到影响的。这些及时的综述为推进微循环研究前沿提供了新的参考。