Cardioprotection Through Pharmacological Activation of Sirtuin 5 in a Murine Model of Acute Myocardial Infarction

Carola Castiello1,2, Panagiotis Efentakis1, Panagiota-Efstathia Nikolaou1

  • 1Laboratory of Pharmacology, Faculty of Pharmacy, National and Kapodistrian University of Athens, Athens, 15771, Greece.

Abstract

Insights

Pharmacological activation of SIRT5 using MC3215 reduces heart attack size by improving metabolic function and activating protective pathways. This novel approach offers cardioprotection against ischemia-reperfusion injury.

Area of Science:

  • Cardiovascular Research
  • Metabolic Regulation
  • Pharmacology

Background:

  • Sirtuins (SIRTs) are crucial for myocardial redox and metabolic control.
  • The cardioprotective role of SIRT5 in reducing infarct size (IS) remains unclear.
  • SIRT5's potential for pharmacological activation in treating heart conditions requires investigation.

Purpose of the Study:

  • To investigate the cardioprotective effects of pharmacological SIRT5 activation.
  • To explore the efficacy of a novel SIRT5-specific agonist, MC3215, in reducing myocardial infarct size.
  • To elucidate the mechanisms underlying SIRT5-mediated cardioprotection.

Main Methods:

  • In vitro screening of SIRT1 and SIRT5 agonists (MC2606, MC3215) in cardiomyoblasts and endothelial cells under hypoxia/reoxygenation.
  • In vivo studies using a mouse model of myocardial ischemia/reperfusion (I/R) injury.
  • Quantification of infarct size, protein malonylation, metabolomics, and molecular pathway analysis (AMPKα, RISK pathway, mitofusin 2).

Main Results:

  • MC3215 significantly reduced infarct size in mice undergoing I/R injury.
  • SIRT5 activation by MC3215 decreased protein malonylation and enhanced fatty acid oxidation.
  • MC3215 treatment activated the AMPKα and RISK pathways, increased mitofusin 2, and improved mitochondrial dynamics without affecting apoptosis.
  • Inhibition of SIRT5 abrogated the cardioprotective effects of MC3215.

Conclusions:

  • Pharmacological agonism of SIRT5 represents a novel cardioprotective strategy.
  • SIRT5 activation salvages ischemic myocardium by activating the RISK pathway and influencing mitochondria-related metabolism.
  • MC3215 demonstrates potential as a therapeutic agent for reducing infarct size and protecting the heart from I/R injury.

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