Renal potassium physiology: integration of the renal response to dietary potassium depletion.

Kamel, Kamel S; Schreiber, Martin; Halperin, Mitchell L · Kidney Int · 2018

review · Level V

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Abstract

We summarize the current understanding of the physiology of the renal handling of potassium (K<sup>+</sup>), and present an integrative view of the renal response to K<sup>+</sup> depletion caused by dietary K<sup>+</sup> restriction. This renal response involves contributions from different nephron segments, and aims to diminish the rate of excretion of K<sup>+</sup> as a result of: decreasing the rate of electrogenic (and increasing the rate of electroneutral) reabsorption of sodium in the aldosterone-sensitive distal nephron (ASDN), decreasing the abundance of renal outer medullary K<sup>+</sup> channels in the luminal membrane of principal cells in the ASDN, decreasing the flow rate in the ASDN, and increasing the reabsorption of K<sup>+</sup> in the cortical and medullary collecting ducts. The implications of this physiology for the association between K<sup>+</sup> depletion and hypertension, and K<sup>+</sup> depletion and formation of calcium kidney stones are discussed.

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