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September 19, 2005Proceedings of the National Academy of Sciences195 citationsOpen Access

Abnormal intrastore calcium signaling in chronic heart failure

ZKZuzana KubalováDTDmitry TerentyevSVSerge Viatchenko‐Karpinski

Key Result

In a canine model of chronic heart failure, diminished sarcoplasmic reticulum calcium release was driven by increased sensitivity of ryanodine receptors to luminal calcium, leading to enhanced calcium leak.

Structured PICO

Does chronic heart failure alter ryanodine receptor sensitivity to luminal calcium and sarcoplasmic reticulum calcium leak in a canine model?

P
Population
Canine model of chronic tachypacing-induced heart failure evaluated for subcellular and molecular features of altered sarcoplasmic reticulum calcium handling.
E
Exposure
Experimental model of chronic heart failure (right ventricular apical tachypacing)
C
Comparator
Control (normal) canine hearts/myocytes
O
Outcome
Intracellular calcium handling, specifically sarcoplasmic reticulum (SR) intraluminal [Ca], Ca sparks, and ryanodine receptor (RyR) sensitivity to luminal Casurrogate

In a canine model of chronic heart failure, diminished sarcoplasmic reticulum calcium release is driven by increased sensitivity of ryanodine receptors to luminal calcium, leading to enhanced spark-mediated calcium leak and reduced intra-SR calcium stores.

Limitations

  • The specific molecular causes for altered RyR function in failing hearts are not known.
  • It is unknown whether calcium dysregulation and the underlying mechanisms differ between left ventricular hypertrophy and heart failure.

Abstract

Diminished Ca release from the sarcoplasmic reticulum (SR) is an important contributor to the impaired contractility of the failing heart. Despite extensive effort, the underlying causes of abnormal SR Ca release in heart failure (HF) remain unknown. We used a combination of simultaneous imaging of cytosolic and SR intraluminal Ca in isolated cardiomyocytes and recordings from single-ryanodine receptor (RyR) channels reconstituted into lipid bilayers to investigate alterations in intracellular Ca handling in an experimental model of chronic HF. We found that diastolic free Ca inside the SR was dramatically reduced because of a Ca leak across the SR membrane, mediated by spontaneous local release events (Ca sparks), in HF myocytes. Additionally, the magnitudes of intrastore Ca depletion signals during global and focal Ca release events were blunted, and CaSR recovery was slowed after global but not focal Ca release in HF myocytes. At the single-RyR level, the sensitivity of RyRs to activation by luminal Ca was greatly enhanced, providing a molecular mechanism for the maintained potentiation of Ca sparks (and increased Ca leak) at reduced intra-SR Ca in HF. This work shows that the diminished SR Ca release characteristic of failing myocardium could be explained by increased sensitivity of RyRs to luminal Ca, leading to enhanced spark-mediated SR Ca leak and reduced intra-SR Ca.

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Cite This Study

Kubalová et al. (2005) studied Chronic heart failure. Chronic tachypacing-induced heart failure vs. Normal canine hearts was evaluated on Sarcoplasmic reticulum calcium content and ryanodine receptor sensitivity. In a canine model of chronic heart failure, diminished sarcoplasmic reticulum calcium release was driven by increased sensitivity of ryanodine receptors to luminal calcium, leading to enhanced calcium leak.

synapsesocial.com/papers/6a202d3260a84f4b7dd8d35ahttps://doi.org/10.1073/pnas.0504298102
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