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High Altitude Pulmonary Hypertension: Role of K+ and Ca2+ Channels

机译:高海拔肺动脉高压:K +和Ca2 +通道的作用

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摘要

Global alveolar hypoxia, as experienced at high-altitude living, has a serious impact on vascular physiology, particular on the pulmonary vasculature. The effects of sustained hypoxia on pulmonary arteries include sustained vasoconstriction and enhanced medial hypertrophy. As the major component of the vascular media, pulmonary artery smooth muscle cells (PASMC) are the main effectors of the physiological response(s) induced during or following hypoxic exposure. Endothelial cells, on the other hand, can sense humoral and haemodynamic changes incurred by hypoxia, triggering their production of vasoactive and mitogenic factors that then alter PASMC function and growth. Transmembrane ion flux through channels in the plasma membrane not only modulates excitation-contraction coupling in PASMC, but also regulates cell volume, apoptosis, and proliferation. In this review, we examine the roles of K+ and Ca2+ channels in the pulmonary vasoconstriction and vascular remodeling observed during chronic hypoxia-induced pulmonary hypertension.
机译:如在高海拔生活中经历的那样,整体肺泡缺氧对血管生理,特别是对肺脉管系统有严重影响。持续性缺氧对肺动脉的影响包括持续性血管收缩和内侧肥大。作为血管介质的主要成分,肺动脉平滑肌细胞(PASMC)是在低氧暴露期间或之后引起的生理反应的主要效应器。另一方面,内皮细胞可以感觉到缺氧引起的体液和血流动力学变化,触发它们产生血管活性和促有丝分裂因子,从而改变PASMC的功能和生长。穿过质膜通道的跨膜离子通量不仅可以调节PASMC中的激发-收缩偶联,还可以调节细胞体积,细胞凋亡和增殖。在这篇综述中,我们研究了K + 和Ca 2 + 通道在慢性低氧引起的肺动脉高压中观察到的肺血管收缩和血管重构中的作用。

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