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Updated: Aug 12, 2025

Characterization of MLKL-mediated Plasma Membrane Rupture in Necroptosis
Published on: August 7, 2018
Necroptosis Drives Major Adverse Cardiovascular Events During Severe COVID-19
Rosana Wiscovitch-Russo1, Elsa D Ibáñez-Prada2, Cristian C Serrano-Mayorga2
1J Craig Venter Institute.
Insights
Severe COVID-19 can lead to heart damage and major adverse cardiac events (MACE) by infecting heart cells. The study found elevated phosphorylated mixed lineage kinase domain-like (pMLKL) protein in MACE patients, suggesting it as a cardiac damage biomarker.
Area of Science:
- Cardiology
- Virology
- Molecular Biology
Background:
- Mechanisms of SARS-CoV-2-induced major adverse cardiac events (MACE) remain unclear.
- Investigating SARS-CoV-2 cardiac infection, cardiomyocyte death, and MACE in severe COVID-19 patients.
Approach:
- Observational prospective cohort study using hamster models and human samples from severe COVID-19 patients.
- Analyzed serum cytokines, biomarkers, and cardiac transcriptomes.
- Assessed viral load, antibody neutralization, and cell death pathways (necroptosis, pyroptosis).
Key Points:
- MACE occurred in 26% of severe COVID-19 patients, associated with higher viral load and specific biomarkers (troponin-I, pro-BNP, IP-10).
- SARS-CoV-2 increased viral titers in hamster hearts post-infection.
- Cardiac transcriptome analysis revealed elevated necroptosis markers (MLKL), but not pyroptosis, in hamster hearts.
Conclusions:
- SARS-CoV-2 can infect the heart during severe COVID-19, inducing necroptosis and MACE.
- Elevated phosphorylated MLKL (pMLKL) in MACE patients' serum indicates cardiac damage.
- pMLKL shows potential as a cardiac damage biomarker and therapeutic target.
Abstract:
Background The mechanisms used by SARS-CoV-2 to induce major adverse cardiac events (MACE) are unknown. Thus, we aimed to determine if SARS-CoV-2 can infect the heart to kill cardiomyocytes and induce MACE in patients with severe COVID-19. Methods This observational prospective cohort study includes experiments with hamsters and human samples from patients with severe COVID-19. Cytokines and serum biomarkers were analyzed in human serum. Cardiac transcriptome analyses were performed in hamsters' hearts. Results From a cohort of 70 patients, MACE was documented in 26% (18/70). Those who developed MACE had higher Log copies/mL of SARS-CoV-2, troponin-I, and pro-BNP in serum. Also, the elevation of IP-10 and a major decrease in levels of IL-17ɑ, IL-6, and IL-1rɑ were observed. No differences were found in the ability of serum antibodies to neutralize viral spike proteins in pseudoviruses from variants of concern. In hamster models, we found a stark increase in viral titers in the hearts 4 days post-infection. The cardiac transcriptome evaluation resulted in the differential expression of ~ 9% of the total transcripts. Analysis of transcriptional changes of the effectors of necroptosis (mixed lineage kinase domain-like, MLKL) and pyroptosis (gasdermin D) showed necroptosis, but not pyroptosis, to be elevated. Active form of MLKL (phosphorylated MLKL, pMLKL) was elevated in hamster hearts and, most importantly, in the serum of MACE patients. Conclusion SARS-CoV-2 can reach the heart during severe COVID-19 and induce necroptosis in the heart of patients with MACE. Thus, pMLKL could be used as a biomarker of cardiac damage and a therapeutic target. Trial registration: Not applicable.
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