Boedtkjer Ebbe, Aalkjaer Christian
Department of Biomedicine and Water and Salt Research Center, Aarhus University, Aarhus, Denmark.
J Vasc Res. 2012;49(6):479-96. doi: 10.1159/000341235. Epub 2012 Aug 18.
Net acid extrusion from vascular smooth muscle (VSMCs) and endothelial cells (ECs) in the wall of resistance arteries is mediated by the Na(+),HCO(3)(-) cotransporter NBCn1 (SLC4A7) and the Na(+)/H(+) exchanger NHE1 (SLC9A1) and is essential for intracellular pH (pH(i)) control. Experimental evidence suggests that the pH(i) of VSMCs and ECs modulates both vasocontractile and vasodilatory functions in resistance arteries with implications for blood pressure regulation. The connection between disturbed pH(i) and altered cardiovascular function has been substantiated by a genome-wide association study showing a link between NBCn1 and human hypertension. On this basis, we here review the current evidence regarding (a) molecular mechanisms involved in pH(i) control in VSMCs and ECs of resistance arteries at rest and during contractions, (b) implications of disturbed pH(i) for resistance artery function, and (c) involvement of disturbed pH(i) in the pathogenesis of vascular disease. The current evidence clearly implies that pH(i) of VSMCs and ECs modulates vascular function and suggests that disturbed pH(i) either consequent to disturbed regulation or due to metabolic challenges needs to be taken into consideration as a mechanistic component of artery dysfunction and disturbed blood pressure regulation.
阻力动脉壁中的血管平滑肌(VSMCs)和内皮细胞(ECs)的净酸排出由钠-碳酸氢根共转运体NBCn1(SLC4A7)和钠/氢交换体NHE1(SLC9A1)介导,对细胞内pH(pH(i))的控制至关重要。实验证据表明,VSMCs和ECs的pH(i)调节阻力动脉的血管收缩和舒张功能,这对血压调节具有重要意义。全基因组关联研究显示NBCn1与人类高血压之间存在联系,这证实了pH(i)紊乱与心血管功能改变之间的关联。在此基础上,我们在此回顾当前关于以下方面的证据:(a)静息和收缩期阻力动脉VSMCs和ECs中pH(i)控制所涉及的分子机制;(b)pH(i)紊乱对阻力动脉功能的影响;(c)pH(i)紊乱在血管疾病发病机制中的作用。当前证据明确表明,VSMCs和ECs的pH(i)调节血管功能,并表明由于调节紊乱或代谢挑战导致的pH(i)紊乱需要作为动脉功能障碍和血压调节紊乱的机制组成部分加以考虑。