ReviewFrontiers in cardiovascular medicine2026
Autophagy, telomerase, and endothelial dysfunction in COVID-19-induced cardiac injury: an evidence-graded genetic and epigenetic synthesis.
Review in Frontiers in cardiovascular medicine, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Authors and funding
5 authors.
Funding
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Abstract
Background: Cardiac injury is a frequent and severe complication of COVID-19, yet the molecular mechanisms driving myocardial involvement remain incompletely understood. Dysregulated autophagy, telomerase/telomere biology, and endothelial dysfunction have emerged as biologically plausible and potentially interconnected contributors to COVID-19-associated cardiac injury. Methods: We conducted a narrative, evidence-graded review of literature retrieved from PubMed and EMBASE, with Google Scholar used selectively as a supplementary source to capture emerging or cross-disciplinary studies. Eligible studies included human investigations and relevant animal models reporting genetic, epigenetic, or molecular alterations in autophagy, telomerase, or endothelial pathways with cardiovascular relevance. Non-English publications, studies lacking primary data, and reports unrelated to cardiovascular or systemic disease mechanisms were excluded. Evidence was stratified as Level I (direct evidence in COVID-19-associated cardiac injury), Level II (COVID-19 systemic or vascular evidence with plausible cardiac relevance), and Level III (non-COVID cardiovascular or systemic disease; hypothesis-generating). Findings: Across viral, cardiovascular, and systemic contexts, key candidate genes, including Conclusion: Autophagy dysregulation, telomere attrition, and endothelial dysfunction represent convergent and biologically plausible mechanisms contributing to COVID-19-associated cardiac injury; however, current evidence remains largely indirect and derived from systemic or vascular compartments rather than cardiac tissue. Cardiac-specific, longitudinal genetic and epigenetic studies are required before these pathways can be considered for biomarker development or therapeutic targeting.
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