Literature DB >> 33392745

Regulation of muscle potassium: exercise performance, fatigue and health implications.

Michael I Lindinger1, Simeon P Cairns2,3.   

Abstract

This review integrates from the single muscle fibre to exercising human the current understanding of the role of skeletal muscle for whole-body potassium (K+) regulation, and specifically the regulation of skeletal muscle [K+]. We describe the K+ transport proteins in skeletal muscle and how they contribute to, or modulate, K+ disturbances during exercise. Muscle and plasma K+ balance are markedly altered during and after high-intensity dynamic exercise (including sports), static contractions and ischaemia, which have implications for skeletal and cardiac muscle contractile performance. Moderate elevations of plasma and interstitial [K+] during exercise have beneficial effects on multiple physiological systems. Severe reductions of the trans-sarcolemmal K+ gradient likely contributes to muscle and whole-body fatigue, i.e. impaired exercise performance. Chronic or acute changes of arterial plasma [K+] (hyperkalaemia or hypokalaemia) have dangerous health implications for cardiac function. The current mechanisms to explain how raised extracellular [K+] impairs cardiac and skeletal muscle function are discussed, along with the latest cell physiology research explaining how calcium, β-adrenergic agonists, insulin or glucose act as clinical treatments for hyperkalaemia to protect the heart and skeletal muscle in vivo. Finally, whether these agents can also modulate K+-induced muscle fatigue are evaluated.

Entities:  

Keywords:  Cardiac muscle; Hyperkalaemia; Hypokalaemia; Na+/K+-ATPase; Skeletal muscle

Year:  2021        PMID: 33392745     DOI: 10.1007/s00421-020-04546-8

Source DB:  PubMed          Journal:  Eur J Appl Physiol        ISSN: 1439-6319            Impact factor:   3.078


  213 in total

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Journal:  Eur J Appl Physiol       Date:  2016-10-22       Impact factor: 3.078

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Authors:  Marika L Armstrong; Ashok K Dua; Coral L Murrant
Journal:  J Physiol       Date:  2007-03-15       Impact factor: 5.182

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Journal:  J Physiol       Date:  2008-11-17       Impact factor: 5.182

8.  Understanding the physiology of the asymptomatic diaphragm of the M1592V hyperkalemic periodic paralysis mouse.

Authors:  Tarek Ammar; Wei Lin; Amanda Higgins; Lawrence J Hayward; Jean-Marc Renaud
Journal:  J Gen Physiol       Date:  2015-12       Impact factor: 4.086

Review 9.  Incidence and Etiology of Sudden Cardiac Death: New Updates for Athletic Departments.

Authors:  Irfan M Asif; Kimberly G Harmon
Journal:  Sports Health       Date:  2017-02-01       Impact factor: 3.843

10.  Stress-induced increase in skeletal muscle force requires protein kinase A phosphorylation of the ryanodine receptor.

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Journal:  J Physiol       Date:  2012-10-15       Impact factor: 5.182

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  6 in total

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Authors:  Alicia A McDonough; Robert A Fenton
Journal:  Pflugers Arch       Date:  2022-06-21       Impact factor: 4.458

2.  Plasma potassium concentration and cardiac repolarisation markers, Tpeak-Tend and Tpeak-Tend/QT, during and after exercise in healthy participants and in end-stage renal disease.

Authors:  Cao Thach Tran; Tania Atanasovska; Claus Graff; Jacob Melgaard; Jørgen K Kanters; Robert Smith; Aaron C Petersen; Keld P Kjeldsen; Michael J McKenna
Journal:  Eur J Appl Physiol       Date:  2022-01-20       Impact factor: 3.078

3.  Effect of Boiling on the Nutrient Composition of Solanum Torvum.

Authors:  Janice Dwomoh Abraham; Emmanuel Kwadwo Sekyere; Isaac Gyamerah
Journal:  Int J Food Sci       Date:  2022-03-16

4.  Intelligent Scanning Detection System of Muscle Exercise Fatigue Based on Surface Electromyography.

Authors:  Weiqi Wang
Journal:  Scanning       Date:  2022-08-27       Impact factor: 1.750

5.  Oral digoxin effects on exercise performance, K+ regulation and skeletal muscle Na+ ,K+ -ATPase in healthy humans.

Authors:  Simon Sostaric; Aaron C Petersen; Craig A Goodman; Xiaofei Gong; Tai-Juan Aw; Malcolm J Brown; Andrew Garnham; Collene H Steward; Kate T Murphy; Kate A Carey; James Leppik; Steve F Fraser; David Cameron-Smith; Henry Krum; Rodney J Snow; Michael J McKenna
Journal:  J Physiol       Date:  2022-08-02       Impact factor: 6.228

6.  A single oral glucose load decreases arterial plasma [K+ ] during exercise and recovery.

Authors:  Collene H Steward; Robert Smith; Nigel K Stepto; Malcolm Brown; Irene Ng; Michael J McKenna
Journal:  Physiol Rep       Date:  2021-06
  6 in total

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