COVID-19 and Acute Coronary Syndromes: From Pathophysiology to Clinical Perspectives
Luca Esposito1, Francesco Paolo Cancro1, Angelo Silverio1
1Department of Medicine, Surgery and Dentistry, University of Salerno, Baronissi, Salerno, Italy.
Insights
Acute coronary syndromes (ACS) in COVID-19 patients stem from oxygen imbalance and inflammation, potentially causing type 1 or type 2 myocardial infarction (MI). Understanding these mechanisms is key for managing high-risk cardiovascular patients.
Area of Science:
- Cardiology
- Infectious Diseases
- Pathophysiology
Background:
- Acute coronary syndromes (ACS) are common in COVID-19 patients, influencing clinical outcomes and mortality.
- The exact mechanisms linking COVID-19 and ACS are still under investigation.
- Hypothesized pathways include oxygen supply/demand imbalance, direct viral injury, systemic inflammation, and endothelial dysfunction.
Purpose of the Study:
- To explore the pathophysiological mechanisms of ACS in COVID-19 patients.
- To elucidate the contributing factors to myocardial damage and thrombotic events in this population.
- To highlight the need for a deeper understanding for improved therapeutic strategies.
Main Methods:
- Review of existing literature on COVID-19 and cardiovascular complications.
- Analysis of proposed pathophysiological pathways including hypoxia, inflammation, and prothrombotic states.
- Examination of laboratory markers indicative of thrombotic and inflammatory processes.
Main Results:
- COVID-19 can lead to type 2 myocardial infarction (MI) due to hypoxia and conditions like sepsis and anemia.
- The virus may trigger type 1 MI by promoting atherosclerotic plaque instability and thrombus formation.
- COVID-19 induces a prothrombotic state via endothelial dysfunction, altered coagulation factors (e.g., d-dimer, tissue factor), and oxidative stress.
Conclusions:
- COVID-19 significantly contributes to ACS through multiple interconnected mechanisms.
- Understanding these complex interactions is crucial for managing cardiovascular risk in COVID-19 patients.
- Further research into ACS pathophysiology in COVID-19 may offer new therapeutic avenues for high-risk individuals.
Abstract:
Acute coronary syndromes (ACS) are frequently reported in patients with coronavirus disease 2019 (COVID-19) and may impact patient clinical course and mortality. Although the underlying pathogenesis remains unclear, several potential mechanisms have been hypothesized, including oxygen supply/demand imbalance, direct viral cellular damage, systemic inflammatory response with cytokine-mediated injury, microvascular thrombosis, and endothelial dysfunction. The severe hypoxic state, combined with other conditions frequently reported in COVID-19, namely sepsis, tachyarrhythmias, anemia, hypotension, and shock, can induce a myocardial damage due to the mismatch between oxygen supply and demand and results in type 2 myocardial infarction (MI). In addition, COVID-19 promotes atherosclerotic plaque instability and thrombus formation and may precipitate type 1 MI. Patients with severe disease often show decrease in platelets count, higher levels of d-dimer, ultralarge von Willebrand factor multimers, tissue factor, and prolongation of prothrombin time, which reflects a prothrombotic state. An endothelial dysfunction has been described as a consequence of the direct viral effects and of the hyperinflammatory environment. The expression of tissue factor, von Willebrand factor, thromboxane, and plasminogen activator inhibitor-1 promotes the prothrombotic status. In addition, endothelial cells generate superoxide anions, with enhanced local oxidative stress, and endothelin-1, which affects the vasodilator/vasoconstrictor balance and platelet aggregation. The optimal management of COVID-19 patients is a challenge both for logistic and clinical reasons. A deeper understanding of ACS pathophysiology may yield novel research insights and therapeutic perspectives in higher cardiovascular risk subjects with COVID-19.
More Related Videos
13:07Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
05:58Testing Acetylcholine Followed by Adenosine for Invasive Diagnosis of Coronary Vasomotor Disorders
Published on: February 3, 2021
Related Concept Videos
Acute Coronary Syndrome II: Pathophysiology and Clinical Manifestations
Acute Coronary Syndrome I: Introduction
Acute Coronary Syndrome III: Diagnostic Studies
Acute Coronary Syndrome IV: Interprofessional Care
Acute Coronary Syndrome V: Nursing Management
Coronary Artery Disease II: Pathophysiology
