New Insights into the Reparative Angiogenesis after Myocardial Infarction

Author:

Martín-Bórnez Marta12ORCID,Falcón Débora12,Morrugares Rosario123ORCID,Siegfried Geraldine4,Khatib Abdel-Majid4ORCID,Rosado Juan A.5ORCID,Galeano-Otero Isabel12ORCID,Smani Tarik12ORCID

Affiliation:

1. Group of Cardiovascular Pathophysiology, Institute of Biomedicine of Seville, University Hospital of Virgen del Rocío/University of Seville/CSIC, Avenida Manuel Siurot s/n, 41013 Seville, Spain

2. Department of Medical Physiology and Biophysics, Faculty of Medicine, University of Seville, 41009 Seville, Spain

3. Department of Cell Biology, Physiology and Immunology, Universidad de Córdoba, 14071 Córdoba, Spain

4. RyTME, Bordeaux Institute of Oncology (BRIC)-UMR1312 Inserm, B2 Ouest, Allée Geoffroy St Hilaire CS50023, 33615 Pessac, France

5. Cellular Physiology Research Group, Department of Physiology, Institute of Molecular Pathology Biomarkers (IMPB), University of Extremadura, 10003 Caceres, Spain

Abstract

Myocardial infarction (MI) causes massive loss of cardiac myocytes and injury to the coronary microcirculation, overwhelming the limited capacity of cardiac regeneration. Cardiac repair after MI is finely organized by complex series of procedures involving a robust angiogenic response that begins in the peri-infarcted border area of the infarcted heart, concluding with fibroblast proliferation and scar formation. Efficient neovascularization after MI limits hypertrophied myocytes and scar extent by the reduction in collagen deposition and sustains the improvement in cardiac function. Compelling evidence from animal models and classical in vitro angiogenic approaches demonstrate that a plethora of well-orchestrated signaling pathways involving Notch, Wnt, PI3K, and the modulation of intracellular Ca2+ concentration through ion channels, regulate angiogenesis from existing endothelial cells (ECs) and endothelial progenitor cells (EPCs) in the infarcted heart. Moreover, cardiac repair after MI involves cell-to-cell communication by paracrine/autocrine signals, mainly through the delivery of extracellular vesicles hosting pro-angiogenic proteins and non-coding RNAs, as microRNAs (miRNAs). This review highlights some general insights into signaling pathways activated under MI, focusing on the role of Ca2+ influx, Notch activated pathway, and miRNAs in EC activation and angiogenesis after MI.

Funder

Agencia Estatal de Investigación

Andalusia Government

FEDER Funds

Universidad de Córdoba

Ministerio de Universidades, Spain

European Union-Next Generation EU

European Social Fund

Andalusian Government

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference120 articles.

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4. Targeting Angiogenesis in Myocardial Infarction: Novel Therapeutics (Review);Li;Exp. Ther. Med.,2021

5. VEGF-A Promotes Angiogenesis after Acute Myocardial Infarction through Increasing ROS Production and Enhancing ER Stress-Mediated Autophagy;Zou;J. Cell Physiol.,2019

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