Inflammation and vascular remodeling in COVID-19 hearts
Christopher Werlein1, Maximilian Ackermann2,3, Helge Stark1,4
1Institute of Pathology, Hannover Medical School, Carl-Neuberg-Straße 1, 30625, Hannover, Germany.
Insights
Cardiac involvement in COVID-19 is an underappreciated macrophage-driven inflammatory process, distinct from viral myocarditis. Researchers found increased intussusceptive angiogenesis and multifocal thrombi in COVID-19 hearts, driven by specific macrophages.
Area of Science:
- Cardiovascular Pathology
- Immunology
- Infectious Diseases
Background:
- COVID-19 (Coronavirus Disease 2019) presents with diverse cardiac symptoms impacting patient outcomes.
- The mechanisms of cardiac involvement in COVID-19 remain largely unknown, unlike pulmonary manifestations.
- Understanding cardiac pathomechanisms is crucial for managing COVID-19 patients.
Purpose of the Study:
- To comprehensively analyze cardiac tissue changes in COVID-19 autopsies.
- To compare COVID-19 cardiac pathology with influenza and other myocarditis cases.
- To elucidate the molecular and morphological underpinnings of cardiac involvement in COVID-19.
Main Methods:
- Multicentre autopsy study comparing COVID-19 hearts (n=24) with influenza (n=16), myocarditis (n=8), and control (n=9) groups.
- Utilized histopathology, multiplexed immunohistochemistry (MPX), scanning electron microscopy, and synchrotron X-ray tomography.
- Assessed gene expression for molecular changes.
Main Results:
- No COVID-19 samples met criteria for viral myocarditis via standard histopathology.
- MPX revealed increased perivascular CD11b/TIE2+ macrophages in COVID-19 hearts over time.
- Ultrastructural analysis identified increased intussusceptive angiogenesis and multifocal thrombi, not visible with conventional methods.
- COVID-19 hearts showed distinct gene expression patterns related to angiogenesis and epithelial-mesenchymal transition (EMT).
Conclusions:
- Cardiac involvement in COVID-19 is an angiocentric, macrophage-driven inflammatory process, distinct from classical viral responses.
- Intussusceptive angiogenesis, previously noted in COVID-19 pneumonia, is a pathognomic sign in affected hearts.
- CD11b+/TIE2+ macrophages drive intussusceptive angiogenesis, suggesting a novel mechanism for cardiac vascular alterations in COVID-19.
Abstract:
A wide range of cardiac symptoms have been observed in COVID-19 patients, often significantly influencing the clinical outcome. While the pathophysiology of pulmonary COVID-19 manifestation has been substantially unraveled, the underlying pathomechanisms of cardiac involvement in COVID-19 are largely unknown. In this multicentre study, we performed a comprehensive analysis of heart samples from 24 autopsies with confirmed SARS-CoV-2 infection and compared them to samples of age-matched Influenza H1N1 A (n = 16), lymphocytic non-influenza myocarditis cases (n = 8), and non-inflamed heart tissue (n = 9). We employed conventional histopathology, multiplexed immunohistochemistry (MPX), microvascular corrosion casting, scanning electron microscopy, X-ray phase-contrast tomography using synchrotron radiation, and direct multiplexed measurements of gene expression, to assess morphological and molecular changes holistically. Based on histopathology, none of the COVID-19 samples fulfilled the established diagnostic criteria of viral myocarditis. However, quantification via MPX showed a significant increase in perivascular CD11b/TIE2 + -macrophages in COVID-19 over time, which was not observed in influenza or non-SARS-CoV-2 viral myocarditis patients. Ultrastructurally, a significant increase in intussusceptive angiogenesis as well as multifocal thrombi, inapparent in conventional morphological analysis, could be demonstrated. In line with this, on a molecular level, COVID-19 hearts displayed a distinct expression pattern of genes primarily coding for factors involved in angiogenesis and epithelial-mesenchymal transition (EMT), changes not seen in any of the other patient groups. We conclude that cardiac involvement in COVID-19 is an angiocentric macrophage-driven inflammatory process, distinct from classical anti-viral inflammatory responses, and substantially underappreciated by conventional histopathologic analysis. For the first time, we have observed intussusceptive angiogenesis in cardiac tissue, which we previously identified as the linchpin of vascular remodeling in COVID-19 pneumonia, as a pathognomic sign in affected hearts. Moreover, we identified CD11b + /TIE2 + macrophages as the drivers of intussusceptive angiogenesis and set forward a putative model for the molecular regulation of vascular alterations.
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