Department of Molecular Pharmacology & Physiology, Morsani College of Medicine, University of South Florida, Tampa, Florida, USA.
Hypertension and Kidney Research Center, Morsani College of Medicine, University of South Florida, Tampa, Florida, USA.
Compr Physiol. 2023 Jan 30;13(1):4215-4229. doi: 10.1002/cphy.c210043.
Abnormalities in renal electrolyte and water excretion may result in inappropriate salt and water retention, which facilitates the development and maintenance of hypertension, as well as acid-base and electrolyte disorders. A key mechanism by which the kidney regulates renal hemodynamics and electrolyte excretion is via tubuloglomerular feedback (TGF), an intrarenal negative feedback between tubules and arterioles. TGF is initiated by an increase of NaCl delivery at the macula densa cells. The increased NaCl activates luminal Na-K-2Cl cotransporter (NKCC2) of the macula densa cells, which leads to activation of several intracellular processes followed by the production of paracrine signals that ultimately result in a constriction of the afferent arteriole and a tonic inhibition of single nephron glomerular filtration rate. Neuronal nitric oxide (NOS1) is highly expressed in the macula densa. NOS1β is the major splice variant and accounts for most of NO generation by the macula densa, which inhibits TGF response. Macula densa NOS1β-mediated modulation of TGF responses plays an essential role in control of sodium excretion, volume and electrolyte hemostasis, and blood pressure. In this article, we describe the mechanisms that regulate macula densa-derived NO and their effect on TGF response in physiologic and pathologic conditions. © 2023 American Physiological Society. Compr Physiol 13:4215-4229, 2023.
肾脏电解质和水排泄的异常可能导致盐和水的不当潴留,从而促进高血压以及酸碱和电解质紊乱的发生和维持。肾脏通过管球反馈 (TGF) 来调节肾血流动力学和电解质排泄,这是一种肾小管和小动脉之间的肾内负反馈机制。TGF 是由致密斑细胞处 NaCl 输送增加引发的。增加的 NaCl 激活致密斑细胞的腔管 Na-K-2Cl 共转运体 (NKCC2),导致几个细胞内过程的激活,随后产生旁分泌信号,最终导致入球小动脉收缩和单肾单位肾小球滤过率的紧张性抑制。神经元型一氧化氮合酶 (NOS1) 在致密斑中高度表达。NOS1β 是主要的剪接变异体,占致密斑中产生的大部分 NO,抑制 TGF 反应。致密斑 NOS1β 介导的 TGF 反应调节在控制钠排泄、容量和电解质平衡以及血压方面发挥着重要作用。在本文中,我们描述了调节致密斑衍生的 NO 的机制及其在生理和病理条件下对 TGF 反应的影响。© 2023 美国生理学会。综合生理学 13:4215-4229, 2023。