The Effect of Hypoxia on Endothelial Cell Function

T. Stevens, D. Rodman
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引用次数: 15

Abstract

A principal function of the vasculature is to transport and deliver O2. Thus, it is not surprising that a variety of mechanisms have evolved to optimize gas exchange in the lungs and O2 delivery to tissues. In both the systemic and pulmonary circulations changes in O2, induce a change in vessel caliber. Decreasing arterial pO2 causes vasodilation in coronary, skeletal muscle, cerebral and gastrointestinal circulations. In contrast, in the pulmonary circulation both airway hypoxia and pulmonary arterial hypoxemia cause vasoconstriction in a process known as hypoxic pulmonary vasoconstriction. Systemic hypoxic vasodilation provides a feedback mechanism of increasing blood flow to tissues with increased metabolic demands. In the pulmonary circulation hypoxic pulmonary vasoconstriction provides a mechanism for optimizing tissue oxygenation, matching perfusion to ventilation, therefore improving gas exchange.
缺氧对内皮细胞功能的影响
脉管系统的一个主要功能是运输和输送氧气。因此,进化出多种机制来优化肺中的气体交换和向组织输送氧气也就不足为奇了。在体循环和肺循环中,氧的变化都会引起血管口径的变化。动脉pO2的降低导致冠状动脉、骨骼肌、脑和胃肠道循环血管舒张。相反,在肺循环中,气道缺氧和肺动脉低氧血症都会引起血管收缩,这一过程被称为低氧性肺血管收缩。全身缺氧血管舒张提供了一种反馈机制,增加了代谢需求增加的组织的血流量。在肺循环中,低氧肺血管收缩提供了一种优化组织氧合的机制,使灌注与通气相匹配,从而改善气体交换。
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