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June 1, 1990AJP Cell Physiology703 citations

Effects of changes of pH on the contractile function of cardiac muscle

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COClive H. OrchardJKJ. C. Kentish

Key Result

Acidosis decreases cardiac muscle contractility through complex mechanisms involving both altered calcium delivery and reduced myofibrillar responsiveness to calcium.

Structured PICO

P
Population
Cardiac muscle
E
Exposure
Acidosis (changes in pH)
O
Outcome
Contractile function (force development)surrogate

This review summarizes the complex mechanisms by which acidosis decreases cardiac muscle contractility, highlighting its diverse effects on calcium handling and myofilament sensitivity.

Abstract

It has been known for over 100 years that acidosis decreases the contractility of cardiac muscle. However, the mechanisms underlying this decrease are complicated because acidosis affects every step in the excitation-contraction coupling pathway, including both the delivery of Ca2+ to the myofilaments and the response of the myofilaments to Ca2+. Acidosis has diverse effects on Ca2+ delivery. Actions that may diminish Ca2+ delivery include 1) inhibition of the Ca2+ current, 2) reduction of Ca2+ release from the sarcoplasmic reticulum, and 3) shortening of the action potential, when such shortening occurs. Conversely, Ca2+ delivery may be increased by the prolongation of the action potential that is sometimes observed and by the rise of diastolic Ca2+ that occurs during acidosis. This rise, which will increase the uptake and subsequent release of Ca2+ by the sarcoplasmic reticulum, may be due to 1) stimulation of Na+ entry via Na(+)-Ca2+ exchange; 2) direct inhibition of Na(+)-Ca2+ exchange; 3) mitochondrial release of Ca2+; and 4) displacement of Ca2+ from cytoplasmic buffer sites by H+. Acidosis inhibits myofibrillar responsiveness to Ca2+ by decreasing the sensitivity of the contractile proteins to Ca2+, probably by decreasing the binding of Ca2+ to troponin C, and by decreasing maximum force, possibly by a direct action on the cross bridges. Thus the final amount of force developed by heart muscle during acidosis is the complex sum of these changes.

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Cite This Study

Orchard et al. (1990) conducted a review in Acidosis in cardiac muscle. Acidosis was evaluated on Contractile function of cardiac muscle. Acidosis decreases cardiac muscle contractility through complex mechanisms involving both altered calcium delivery and reduced myofibrillar responsiveness to calcium.

synapsesocial.com/papers/6a1eece8818505c9bb88cbbahttps://doi.org/10.1152/ajpcell.1990.258.6.c967
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of acid‐base changes on excitation‐‐contraction coupling in guinea‐pig and rabbit cardiac ventricular muscle.1981 · 121 citations
  2. 2Altered Ca fluxes and contractile state during pH changes in cultured heart cells1987 · 29 citations
  3. 3The effect of pH on the transient-state kinetics of Ca2+-Mg2+-ATPase of cardiac sarcoplasmic reticulum. A comparison with skeletal sarcoplasmic reticulum.1982 · 63 citations
  4. 4Acidosis during early reperfusion prevents myocardial stunning in perfused ferret hearts.1988 · 198 citations
  5. 5Hydrogen ion modulation of Ca channel current in cardiac ventricular cells. Evidence for multiple mechanisms.1988 · 101 citations