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A Modified Simple Method for Induction of Myocardial Infarction in Mice
Published on: December 3, 2021
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.
Purpose:
Sirtuins (SIRTs) play a critical role in redox and metabolic regulation of the myocardium; however, the cardioprotective potential of SIRT5 in terms of infarct size (IS) reduction is still elusive. Herein, we employed the newly synthesized SIRT5-specific agonist, MC3215, developed by our group, to explore for the first time the pharmacological activation of SIRT5 as a target for cardioprotection.
Methods And Results:
In in vitro screening experiments, SIRT1 and SIRT5 agonists, namely, MC2606 and MC3215, at 1-20 μΜ were added to cardiomyoblasts (H9c2) and human endothelial cells (EA.hy-926) during 24 h hypoxia/2 h reoxygenation (H/R). SIRT1 and SIRT5 agonists mitigated H/R injury. Male C57BL/6J mice underwent 30 min ischemia (I) followed by 2 h or 24 h reperfusion (R). Mice received vehicle, the SIRT1 or SIRT5 agonists at 20 and 30 mg/kg at the 20th min of ischemia, and IS was quantified via triphenyl-tetrazolium chloride staining (n=5-7/group). MC3215-mediated SIRT5 activation reduced IS at 24 h R at 20mg/kg compared to controls (25.18±2.7% vs 38.80±4.7%). MC3215 treatment resulted in reduced protein malonylation in all experimental settings. Targeted mass-spectrometry-based metabolomics in the ischemic heart at the 10th min of R suggested increased fatty acid oxidation, as indicated by increased N3-Trimethyllysine and D-pantothenate. Concomitantly, molecular analysis indicated that the SIRT5 agonist activated AMPKα and Reperfusion Injury Salvage Kinase (RISK) pathway. Additionally, at 3 h reperfusion, MC3215 led to increased mitofusin 2 without altering apoptosis, paving towards improved mitochondrial dynamics. Co-administration of SIRT5 inhibitor, TW-37, abrogated MC3215-mediated cardioprotection.
Conclusion:
SIRT5 pharmacological agonism emerges as a novel cardioprotective target, leading to RISK pathway activation and mitochondria-related metabolic effects, converging at salvaging ischemic myocardium from I/R injury.
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.

