Pharmacological Modulation by Low Molecular Weight Heparin of Purinergic Signaling in Cardiac Cells Prevents Arrhythmia and Lethality Induced by Myocardial Infarction

Author:

Filho Carlos Eduardo Braga1ORCID,Barbosa Adriano Henrique Pereira1,Nicolau Lucas Antonio Duarte2,Medeiros Jand Venes Rolim2ORCID,Pires-Oliveira Marcelo3ORCID,dos Santos Póvoa Rui Manuel1,Govato Tânia Carmen Penãranda1,Júnior Hézio Jadir Fernandes1,de Carvalho Rafael Guzella1,Luna-Filho Bráulio1,Sabia Tallo Fernando4,de Araújo Erisvaldo Amarante1,Padrão Tavares José Gustavo5,Arida Ricardo Mario6,Caricati-Neto Afonso5,Menezes-Rodrigues Francisco Sandro1ORCID

Affiliation:

1. Postgraduate Program in Cardiology, Universidade Federal de São Paulo (UNIFESP), São Paulo 04024-000, SP, Brazil

2. Department of Biotechnology, Universidade Federal do Delta do Parnaíba (UFDPar), Parnaíba 64202-020, PI, Brazil

3. União Metropolitana de Educação e Cultura–School of Medicine (UNIME), Lauro de Freitas 42700-000, BA, Brazil

4. Department of Urgency and Emergency Care, Universidade Federal de São Paulo (UNIFESP), São Paulo 04024-000, SP, Brazil

5. Department of Pharmacology, Universidade Federal de São Paulo (UNIFESP), São Paulo 04023-062, SP, Brazil

6. Department of Physiology, Universidade Federal de São Paulo (UNIFESP), São Paulo 04023-062, SP, Brazil

Abstract

Background: Although several studies suggest that heparins prevent arrhythmias caused by acute myocardial infarction (AMI), the molecular mechanisms involved remain unclear. To investigate the involvement of pharmacological modulation of adenosine (ADO) signaling in cardiac cells by a low-molecular weight heparin (enoxaparin; ENOX) used in AMI therapy, the effects of ENOX on the incidences of ventricular arrhythmias (VA), atrioventricular block (AVB), and lethality (LET) induced by cardiac ischemia and reperfusion (CIR) were evaluated, with or without ADO signaling blockers. Methods: To induce CIR, adult male Wistar rats were anesthetized and subjected to CIR. Electrocardiogram (ECG) analysis was used to evaluate CIR-induced VA, AVB, and LET incidence, after treatment with ENOX. ENOX effects were evaluated in the absence or presence of an ADO A1-receptor antagonist (DPCPX) and/or an inhibitor of ABC transporter-mediated cAMP efflux (probenecid, PROB). Results: VA incidence was similar between ENOX-treated (66%) and control rats (83%), but AVB (from 83% to 33%) and LET (from 75% to 25%) incidences were significantly lower in rats treated with ENOX. These cardioprotective effects were blocked by either PROB or DPCPX. Conclusion: These results indicate that ENOX was effective in preventing severe and lethal arrhythmias induced by CIR due to pharmacological modulation of ADO signaling in cardiac cells, suggesting that this cardioprotective strategy could be promising in AMI therapy.

Funder

CNPq, CAPES, and FAPESP

Publisher

MDPI AG

Subject

Pharmacology (medical),General Pharmacology, Toxicology and Pharmaceutics

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