ArticleFrontiers in physiology2024
Mitochondrial related variants associated with cardiovascular traits.
Article in Frontiers in physiology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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Who cites it
7 citing papers in PubMed.
- Echoes in the powerhouse: mito-lncRNAs contribution to cardiac function and disease.Acta pharmacologica Sinica · 2026Review
- Clotting the Gap Between Mitochondria-Mediated Immunity and Mitochondrial Transfer.Circulation research · 2026Review
- Mitochondrial DNA Dysfunction in Cardiovascular Diseases: A Novel Therapeutic Target.Antioxidants (Basel, Switzerland) · 2025Review
- Exploring Single-Nucleotide Polymorphisms in Primary and Secondary Male Infertility.Medical sciences (Basel, Switzerland) · 2025Article
- Reduced mtDNA Copy Number Links to Vascular Calcification and Restores After Transplantation.Cells · 2025Article
- Mitochondrial Dysfunction in the Development and Progression of Cardiometabolic Diseases: A Narrative Review.Journal of clinical medicine · 2025Review
- IFNγ activates an immune-like regulatory network in the cardiac vascular endothelium.Journal of molecular and cellular cardiology plus · 2025Article
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Authors and funding
11 authors.
Funding
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Abstract
Introduction: Cardiovascular disease (CVD) is responsible for over 30% of mortality worldwide. CVD arises from the complex influence of molecular, clinical, social, and environmental factors. Despite the growing number of autosomal genetic variants contributing to CVD, the cause of most CVDs is still unclear. Mitochondria are crucial in the pathophysiology, development and progression of CVDs; the impact of mitochondrial DNA (mtDNA) variants and mitochondrial haplogroups in the context of CVD has recently been highlighted. Aims: We investigated the role of genetic variants in both mtDNA and nuclear-encoded mitochondrial genes (NEMG) in CVD, including coronary artery disease (CAD), hypertension, and serum lipids in the UK Biobank, with sub-group analysis for diabetes. Methods: We investigated 371,542 variants in 2,527 NEMG, along with 192 variants in 32 mitochondrial genes in 381,994 participants of the UK Biobank, stratifying by presence of diabetes. Results: Mitochondrial variants showed associations with CVD, hypertension, and serum lipids. Mitochondrial haplogroup J was associated with CAD and serum lipids, whereas mitochondrial haplogroups T and U were associated with CVD. Among NEMG, variants within Nitric Oxide Synthase 3 ( Conclusion: Our study demonstrates the relevance of mitochondrial related variants in the context of CVD. We have linked mitochondrial haplogroup U to CVD, confirmed association of mitochondrial haplogroups J and T with CVD and proposed new markers of hypertension and serum lipids in the context of diabetes. We have also evidenced connections between the etiological pathways underlying CVDs, blood pressure and serum lipids, placing
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