Department of Biomedical Sciences, Faculty of Biology and Medicine, University of Lausanne, Lausanne.
National Center of Competence in Research, Kidney.CH, Zurich, Switzerland.
Curr Opin Nephrol Hypertens. 2022 Sep 1;31(5):493-501. doi: 10.1097/MNH.0000000000000821. Epub 2022 Jul 15.
This review provides an up-to-date understanding about the regulation of epithelial sodium channel (ENaC) expression and function. In particular, we will focus on its implication in renal Na+ and K+ handling and control of blood pressure using transgenic animal models.
In kidney, the highly amiloride-sensitive ENaC maintains whole body Na+ homeostasis by modulating Na+ transport via epithelia. This classical role is mostly confirmed using genetically engineered animal models. Recently identified key signaling pathways that regulate ENaC expression and function unveiled some nonclassical and unexpected channel regulatory processes. If aberrant, these dysregulated mechanisms may also result in the development of salt-dependent hypertension.The purpose of this review is to highlight the most recent findings in renal ENaC regulation and function, in considering data obtained from animal models.
Increased ENaC-mediated Na+ transport is a prerequisite for salt-dependent forms of hypertension. To treat salt-sensitive hypertension it is crucial to fully understand the function and regulation of ENaC.
本文综述了上皮钠通道(ENaC)表达和功能调控的最新研究进展。特别聚焦于利用转基因动物模型探讨 ENaC 在肾脏钠钾处理和血压控制中的作用。
在肾脏中,高度阿米洛利敏感的 ENaC 通过调节上皮细胞的钠转运来维持全身钠稳态。这一经典作用主要通过基因工程动物模型得到证实。最近发现的调节 ENaC 表达和功能的关键信号通路揭示了一些非经典和意外的通道调控过程。如果这些调控机制失调,也可能导致盐依赖性高血压的发生。本文旨在强调从动物模型中获得的研究数据,阐明肾脏 ENaC 调控和功能的最新发现。
增加 ENaC 介导的钠转运是盐依赖性高血压的前提。为了治疗盐敏感性高血压,充分了解 ENaC 的功能和调控至关重要。