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Peer-reviewed veterinary case report

Cardioprotective effects of the ranolazine in myocardial infarction mediated by stimulation of the endogenous mediators involved in ischemic preconditioning.

Journal:
Acta cirurgica brasileira
Year:
2026
Authors:
Tantray, Junaid et al.
Affiliation:
Nims University - Nims Institute of Pharmacy - Department of Pharmacology - Jaipur · India

Abstract

PURPOSE: Hypothesis centered on the idea that ranolazine could induce responses similar to ischemic preconditioning, involving nitric oxide, adenosine, bradykinin, and adenosine triphosphate (ATP)-dependent potassium channels. METHODS: Ischemia-reperfusion injury was established using Langendroff technique. Thirty-minute ischemia and 120-minute reperfusion to coronary artery to isolated heart were model of myocardial infarction. There were studied the following groups: control (ischemia-reperfusion), ischemic preconditioning, ranolazine (10 µmol/L), ranolazine + L-NAME (30 µmol/L) and ranolazine + aminoguanidine (30 µmol/L), ranolazine + theophylline (50 µmol/L), ranolazine + aminophylline (50 µmol/L), ranolazine + icatibantl (100 µmol/L), ranolazine + bromelain (250 µmol/L), ranolazine + 5-hydroxydecanoate (30 µmol/L), and ranolazine + glimepiride (50 µmol/L) in perfusate. RESULTS: Ranolazine and ischemic preconditioning groups demonstrated cardioprotective effects by reducing infarct size, as well as levels of lactate dehydrogenase (LDH), creatine phosphokinase myoglobin (CK-MB), and troponin I and cardiac parameters like left ventricular developed pressure (LVDP) and left ventricular maximum rate of contraction (dP/dTmax). Maximum rate of relaxation (dP/dTmin) was improved. Conversely, treatments with L-NAME, aminoguanidine, theophylline, aminophylline, icatibant, bromelain, 5-hydroxydecanoate, and glimepiride increased infarct size, LDH, CK-MB, and troponin I levels, and cardiac parameters like LVDP, dP/dTmax, and dP/dTmin were depressed. This data provides evidence that ranolazine employs nitric oxide, adenosine, bradykinin, and ATP-dependent potassium channels as secondary messengers in cardioprotection. CONCLUSION: ranolazine can be a pharmacological alternative to surgical ischemic preconditioning utilized prior to interventional procedures like coronary artery bypass graft surgery and heart transplantation, offering improved patient compliance.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/41880439/