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Updated: Dec 11, 2025

Author Spotlight: Integrated Multi-Omics Analysis for Unveiling Multicellular Immune Signatures in Clinical Heart Attack Cohorts
Published on: September 20, 2024
Possible molecular and paracrine involvement underlying the pathogenesis of COVID-19 cardiovascular complications
Antoine Fakhry AbdelMassih1,2, David Ramzy3, Lauren Nathan3
1Pediatric Cardiology Unit, Pediatrics' Department, Faculty of Medicine, Cairo University.
Insights
Coronavirus disease 2019 (COVID-19) can cause heart problems, including heart failure, by affecting the heart muscle and blood flow. Understanding these cardiac complications may help develop treatments for COVID-19 cardiovascular issues.
Area of Science:
- Cardiology
- Infectious Diseases
- Pathophysiology
Background:
- Coronavirus disease 2019 (COVID-19) is a global pandemic primarily affecting the respiratory system.
- Cardiac complications, ranging from sudden cardiac death to heart failure, are increasingly recognized in COVID-19 patients.
- Elevated cardiac troponins and acute heart failure due to ventricular hypokinesis are common cardiac presentations.
Abstract:
Coronavirus disease 2019 (COVID-19) has been declared a pandemic on 11 March 2020 by the WHO. Despite being mainly a respiratory virus, cardiac complications have been described. These range from sudden cardiac death to subtle diastolic dysfunction after recovery from COVID-19. The commonest cardiac presentation to date is acute heart failure resulting from biventricular or left ventricular hypokinesis and elevation of cardiac troponins. It has been shown that COVID-19 downregulates angiotensin-converting enzyme-2, which has protective effects on the endothelium and cardiomyocytes. It has also been proven that COVID-19 induces a state of hypercytokinaemia, some cytokines such as interleukin-1 and interleukin-6 have an injurious effect on the myocardium and endothelium, respectively. Such pathogenic mechanisms might play a crucial role in induction of cardiomyocyte injury and impaired myocardial perfusion probably through coronary endothelial dysfunction. The understanding and linking of such mechanisms might help in tailoring drug repurposing for treatment or prophylaxis of COVID-19 cardiovascular complications.
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