Pallone Thomas L, Zhang Zhong, Rhinehart Kristie
Division of Nephrology, University of Maryland School of Medicine, Baltimore, Maryland 21201-1595, USA.
Am J Physiol Renal Physiol. 2003 Feb;284(2):F253-66. doi: 10.1152/ajprenal.00304.2002.
Perfusion of the renal medulla plays an important role in salt and water balance. Pericytes are smooth muscle-like cells that impart contractile function to descending vasa recta (DVR), the arteriolar segments that supply the medulla with blood flow. DVR contraction by ANG II is mediated by depolarization resulting from an increase in plasma membrane Cl(-) conductance that secondarily gates voltage-activated Ca(2+) entry. In this respect, DVR may differ from other parts of the efferent microcirculation of the kidney. Elevation of extracellular K(+) constricts DVR to a lesser degree than ANG II or endothelin-1, implying that other events, in addition to membrane depolarization, are needed to maximize vasoconstriction. DVR endothelial cytoplasmic Ca(2+) is increased by bradykinin, a response that is inhibited by ANG II. ANG II inhibition of endothelial Ca(2+) signaling might serve to regulate the site of origin of vasodilatory paracrine agents generated in the vicinity of outer medullary vascular bundles. In the hydropenic kidney, DVR plasma equilibrates with the interstitium both by diffusion and through water efflux across aquaporin-1. That process is predicted to optimize urinary concentration by lowering blood flow to the inner medulla. To optimize urea trapping, DVR endothelia express the UT-B facilitated urea transporter. These and other features show that vasa recta have physiological mechanisms specific to their role in the renal medulla.
肾髓质灌注在盐和水平衡中起重要作用。周细胞是类似平滑肌的细胞,赋予直小血管降支(DVR)收缩功能,直小血管降支是为髓质提供血流的小动脉段。血管紧张素II(ANG II)引起的DVR收缩是由质膜Cl⁻电导增加导致的去极化介导的,质膜Cl⁻电导增加继而控制电压激活的Ca²⁺内流。在这方面,DVR可能与肾传出微循环的其他部分不同。细胞外K⁺升高对DVR的收缩作用小于ANG II或内皮素-1,这意味着除了膜去极化外,还需要其他事件来使血管收缩最大化。缓激肽可增加DVR内皮细胞质Ca²⁺,这一反应受到ANG II的抑制。ANG II对内皮Ca²⁺信号的抑制作用可能有助于调节在外髓血管束附近产生的血管舒张旁分泌因子的起源部位。在缺水的肾脏中,DVR血浆通过扩散以及通过水通道蛋白-1的水外流与间质达到平衡。预计该过程可通过降低内髓的血流来优化尿液浓缩。为了优化尿素捕获,DVR内皮细胞表达UT-B促进性尿素转运体。这些以及其他特征表明直小血管具有与其在肾髓质中的作用相关的生理机制。