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Measurement of Antibody Effects on Cellular Function of Isolated Cardiomyocytes
Published on: March 8, 2013
The majority of severe COVID-19 patients develop anti-cardiac autoantibodies
Miklós Fagyas1,2,3,4, Béla Nagy5, Arnold Péter Ráduly1,2,6
1Division of Clinical Physiology, Department of Cardiology, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.
Insights
Severe COVID-19 patients frequently develop anti-cardiac autoantibodies, potentially contributing to long COVID complications. These autoantibodies target various heart proteins, with IgM types being novel findings in hospitalized patients.
Area of Science:
- Immunology
- Cardiology
- Infectious Diseases
Background:
- Severe COVID-19 is linked to inflammation and multiorgan failure, particularly in the elderly.
- Pro-inflammatory states and tissue damage in COVID-19 can trigger autoimmunity and autoantibody generation.
- A subset of these autoantibodies may target cardiac antigens, potentially explaining cardiac complications.
Purpose of the Study:
- To investigate the presence and characteristics of anti-cardiac autoantibodies in hospitalized patients with severe COVID-19.
- To compare autoantibody levels in COVID-19 patients with those in heart failure and aortic stenosis patients.
- To explore potential correlations between autoantibodies, clinical outcomes, and patient demographics.
Main Methods:
- Recruitment of 104 severe COVID-19 patients and control groups (40 heart failure, 20 aortic stenosis).
- Detection of anti-cardiac autoantibodies using human heart homogenate.
- Analysis of IgG and IgM autoantibody isotypes and their targets.
- Follow-up assessments in a subset of COVID-19 patients.
Main Results:
- Anti-cardiac autoantibodies were found in 68% of severe COVID-19 patients.
- IgM anti-cardiac autoantibodies were prevalent (51%), with novel detection in this group.
- Autoantibodies targeted diverse myocardial proteins; their presence did not correlate with clinical outcome or age.
- COVID-19 patients showed higher IgM autoantibody levels compared to heart failure controls.
Conclusions:
- The majority of hospitalized COVID-19 patients generate novel anti-cardiac IgM autoantibodies and reactivate resident IgG autoantibodies.
- These autoantibodies may contribute to autoimmune reactions, potentially complicating recovery and leading to long COVID.
- Further research is needed to understand the precise role of these autoantibodies in post-COVID sequelae.
Abstract:
Severe cases of COVID-19 are characterized by an inflammatory burst, which is accompanied by multiorgan failure. The elderly population has higher risk for severe or fatal outcome for COVID-19. Inflammatory mediators facilitate the immune system to combat viral infection by producing antibodies against viral antigens. Several studies reported that the pro-inflammatory state and tissue damage in COVID-19 also promotes autoimmunity by autoantibody generation. We hypothesized that a subset of these autoantibodies targets cardiac antigens. Here we aimed to detect anti-cardiac autoantibodies in severe COVID-19 patients during hospitalization. For this purpose, 104 COVID-19 patients were recruited, while 40 heart failure patients with dilated cardiomyopathy and 20 patients with severe aortic stenosis served as controls. Patients were tested for anti-cardiac autoantibodies, using human heart homogenate as a bait. Follow-up samples were available in 29 COVID-19 patients. Anti-cardiac autoantibodies were detected in 68% (71 out of 104) of severe COVID-19 patients. Overall, 39% of COVID-19 patients had anti-cardiac IgG autoantibodies, while 51% had anti-cardiac autoantibodies of IgM isotype. Both IgG and IgM anti-cardiac autoantibodies were observed in 22% of cases, and multiple cardiac antigens were targeted in 38% of COVID-19 patients. These anti-cardiac autoantibodies targeted a diverse set of myocardial proteins, without apparent selectivity. As controls, heart failure patients (with dilated cardiomyopathy) had similar occurrence of IgG (45%, p = 0.57) autoantibodies, while significantly lower occurrence of IgM autoantibodies (30%, p = 0.03). Patients with advanced aortic stenosis had significantly lower number of both IgG (11%, p = 0.03) and IgM (10%, p < 0.01) type anti-cardiac autoantibodies than that in COVID-19 patients. Furthermore, we detected changes in the anti-cardiac autoantibody profile in 7 COVID-19 patients during hospital treatment. Surprisingly, the presence of these anti-cardiac autoantibodies did not affect the clinical outcome and the prevalence of the autoantibodies did not differ between the elderly (over 65 years) and the patients younger than 65 years of age. Our results demonstrate that the majority of hospitalized COVID-19 patients produce novel anti-cardiac IgM autoantibodies. COVID-19 also reactivates resident IgG autoantibodies. These autoantibodies may promote autoimmune reactions, which can complicate post-COVID recuperation, contributing to post-acute sequelae of COVID-19 (long COVID).
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