Effects of Metformin on Ischemia/Reperfusion Injury: New Evidence and Mechanisms

Author:

Osorio-Llanes Estefanie123ORCID,Villamizar-Villamizar Wendy1,Ospino Guerra María Clara1ORCID,Díaz-Ariza Luis Antonio1ORCID,Castiblanco-Arroyave Sara Camila1,Medrano Luz4,Mengual Daniela4,Belón Ricardo1,Castellar-López Jairo1,Sepúlveda Yanireth23,Vásquez-Trincado César5ORCID,Chang Aileen Y.6ORCID,Bolívar Samir4ORCID,Mendoza-Torres Evelyn1

Affiliation:

1. Advanced Biomedicine Research Group, Faculty of Health Sciences, Universidad Libre de Colombia, Seccional Barranquilla, Barranquilla 081001, Colombia

2. Allied Research Society S.A.S., Barranquilla 080001, Colombia

3. Global Disease Research Colombia, Barranquilla 080001, Colombia

4. Healthcare Pharmacy and Pharmacology Research Group, Faculty of Chemistry and Pharmacy, Universidad del Atlántico, Barranquilla 081007, Colombia

5. Escuela de Química y Farmacia, Facultad de Medicina, Universidad Andres Bello, Santiago 8370134, Chile

6. Department of Medicine, Faculty of Medicine, Foggy Bottom Campus, George Washington University, Washington, DC 20052, USA

Abstract

The search for new drugs with the potential to ensure therapeutic success in the treatment of cardiovascular diseases has become an essential pathway to follow for health organizations and committees around the world. In June 2021, the World Health Organization listed cardiovascular diseases as one of the main causes of death worldwide, representing 32% of them. The most common is coronary artery disease, which causes the death of cardiomyocytes, the cells responsible for cardiac contractility, through ischemia and subsequent reperfusion, which leads to heart failure in the medium and short term. Metformin is one of the most-used drugs for the control of diabetes, which has shown effects beyond the control of hyperglycemia. Some of these effects are mediated by the regulation of cellular energy metabolism, inhibiting apoptosis, reduction of cell death through regulation of autophagy and reduction of mitochondrial dysfunction with further reduction of oxidative stress. This suggests that metformin may attenuate left ventricular dysfunction induced by myocardial ischemia; preclinical and clinical trials have shown promising results, particularly in the setting of acute myocardial infarction. This is a review of the molecular and pharmacological mechanisms of the cardioprotective effects of metformin during myocardial ischemia-reperfusion injury.

Funder

Faculty of Health Sciences, Universidad Libre de Colombia

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

Reference84 articles.

1. World Health Organization (2022, January 03). Cardiovascular Diseases. Available online: https://www.who.int/news-room/fact-sheets/detail/cardiovascular-diseases-(cvds).

2. Pan American Health Organization (2022, January 03). Cardiovascular Disease Burden. Available online: https://www.paho.org/en/enlace/cardiovascular-disease-burden.

3. Global Epidemiology of Ischemic Heart Disease: Results from the Global Burden of Disease Study;Khan;Cureus,2020

4. Kuznetsov, A., Javadov, S., Margreiter, R., Grimm, M., Hagenbuchner, J., and Ausserlechner, M. (2019). The Role of Mitochondria in the Mechanisms of Cardiac Ischemia-Reperfusion Injury. Antioxidants, 8.

5. Dunker, D., and Canty, J. (2022). Braunwald´s Heart Disease, Elseiver. [12th ed.].

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