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September 1, 1996AJP Regulatory Integrative and Comparative Physiology41 citations

Protein kinase C mediates Ca2(+)-induced cardioadaptation to ischemia-reperfusion injury

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DMDaniel R. MeldrumInterventional / Structural CardiologyJCJoseph C. ClevelandCardiac SurgeryMMMax B. MitchellChildren's Hospital Colorado

Key Result

A ryanodine-induced preischemia Ca2+ load improved post-ischemia-reperfusion myocardial functional recovery in rat hearts, an effect that was eliminated by PKC inhibition.

Structured PICO

P
Population
Crystalloid-perfused (Langendorff) Sprague-Dawley rat hearts
I
Intervention
Ryanodine (Ry)-induced preischemia Ca2+ load (5 nM/2 min, retrograde coronary) 10 min before global ischemia-reperfusion (20 min)
C
Comparator
Control (no ryanodine) and ryanodine with PKC inhibitors (20 microM chelerythrine or 150 nM bisindolylmaleimide I-HCl)
O
Outcome
Myocardial functional recovery (developed pressure, end-diastolic pressure, coronary flow, and creatine kinase activity)surrogate

Preischemia Ca2+ load from the sarcoplasmic reticulum confers post-ischemia-reperfusion myocardial functional protection via PKC regulation.

Abstract

Although protein kinase C (PKC)-mediated cardioadaptation to ischemia-reperfusion (IR) is accompanied by increased intracellular Ca2+ concentration, it is unknown whether a preischemia sarcoplasmic reticulum (SR) Ca2+ release affects PKC-mediated post-IR functional protection. To study this, crystalloid-perfused (Langendorff) Sprague-Dawley rat hearts were used to assess the effects of a ryanodine (Ry)-induced preischemia Ca2+ load (Ry, 5 nM/2 min, retrograde coronary) 10 min before global IR (20 min). Ry was administered with and without each of two different PKC inhibitors (20 microM chelerythrine and 150 nM bisindolylmaleimide I-HCl). Ry improved myocardial functional recovery (developed pressure, end-diastolic pressure, coronary flow, and creatine kinase activity), which was eliminated after PKC inhibition. Immunohistochemical staining for PKC isoforms demonstrated that Ry induces specific PKC translocation of alpha-, delta-, and zeta-isoforms. We conclude that 1) a preischemia Ca2+ load from the SR results in post-IR myocardial functional protection 2) Ca(2+)-induced functional protection is PKC regulated via the translocation of specific isoforms, and 3) Ca(2+)-induced cardioadaptation to IR injury may have important therapeutic implications prior to planned ischemic events such as cardiac allograft preservation and cardiac bypass surgery.

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Cite This Study

Meldrum et al. (1996) studied Ischemia-reperfusion injury. Ryanodine-induced preischemia Ca2+ load vs. Without ryanodine or with PKC inhibitors (chelerythrine, bisindolylmaleimide I-HCl) was evaluated on Myocardial functional recovery (developed pressure, end-diastolic pressure, coronary flow, and creatine kinase activity). A ryanodine-induced preischemia Ca2+ load improved post-ischemia-reperfusion myocardial functional recovery in rat hearts, an effect that was eliminated by PKC inhibition.

synapsesocial.com/papers/6a090d86da638ec17f73b3cahttps://doi.org/10.1152/ajpregu.1996.271.3.r718
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Also Consider

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

  1. 1Post-ischemic PKC inhibition impairs myocardial calcium handling and increases contractile protein calcium sensitivity2001 · 23 citations
  2. 2Status of Ca2+/calmodulin protein kinase phosphorylation of cardiac SR proteins in ischemia-reperfusion1999 · 76 citations
  3. 3CONSTRUCTIVE PRIMING OF MYOCARDIUM AGAINST ISCHEMIA-REPERFUSION INJURY1996 · 35 citations
  4. 4Protein Kinase C Epsilon Peptide Inhibitor Exerts Cardioprotective Effects in Myocardial Ischemia/Reperfusion Injury2017 · 3 citations
  5. 5Isoproterenol mimics calcium preconditioning-induced protection against ischemia1997 · 24 citations