Effects of pH on potassium: new explanations for old observations.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 21980112.
- Also identified by DOI 10.1681/ASN.2011040414 and PMC identifier 3231780.
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Abstract
Maintenance of extracellular K(+) concentration within a narrow range is vital for numerous cell functions, particularly electrical excitability of heart and muscle. Potassium homeostasis during intermittent ingestion of K(+) involves rapid redistribution of K(+) into the intracellular space to minimize increases in extracellular K(+) concentration, and ultimate elimination of the K(+) load by renal excretion. Recent years have seen great progress in identifying the transporters and channels involved in renal and extrarenal K(+) homeostasis. Here we apply these advances in molecular physiology to understand how acid-base disturbances affect serum potassium.
Medical subject headings
- Acid-Base Equilibrium
- Homeostasis
- Kidney
- Potassium
- Potassium Channels