Pittsburgh Heart, Lung, and Blood Vascular Medicine Institute, University of Pittsburgh, Pittsburgh, Pennsylvania, USA; email:
Pulmonary, Allergy, and Critical Care Medicine, Department of Medicine, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.
Annu Rev Physiol. 2023 Feb 10;85:165-189. doi: 10.1146/annurev-physiol-031522-021457.
Resistance arteries and arterioles evolved as specialized blood vessels serving two important functions: () regulating peripheral vascular resistance and blood pressure and () matching oxygen and nutrient delivery to metabolic demands of organs. These functions require control of vessel lumen cross-sectional area (vascular tone) via coordinated vascular cell responses governed by precise spatial-temporal communication between intracellular signaling pathways. Herein, we provide a contemporary overview of the significant roles that redox switches play in calcium signaling for orchestrated endothelial, smooth muscle, and red blood cell control of arterial vascular tone. Three interrelated themes are the focus: () smooth muscle to endothelial communication for vasoconstriction, () endothelial to smooth muscle cell cross talk for vasodilation, and () oxygen and red blood cell interregulation of vascular tone and blood flow. We intend for this thematic framework to highlight gaps in our current knowledge and potentially spark interest for cross-disciplinary studies moving forward.
阻力血管和小动脉作为专门的血管进化而来,具有两个重要功能:()调节外周血管阻力和血压,()将氧气和营养物质输送到器官的代谢需求相匹配。这些功能需要通过细胞内信号通路之间的精确时空通讯来协调血管细胞反应,从而控制血管腔横截面面积(血管张力)。在这里,我们提供了一个当代的概述,说明了氧化还原开关在钙信号传导中对于协调内皮细胞、平滑肌和红细胞对动脉血管张力的控制所起的重要作用。三个相互关联的主题是重点:()平滑肌到内皮细胞的通讯以实现血管收缩,()内皮细胞到平滑肌细胞的串扰以实现血管舒张,以及()氧气和红细胞对血管张力和血流的相互调节。我们希望这个主题框架能够突出我们当前知识中的空白,并有可能激发未来跨学科研究的兴趣。