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Metformin: A Promising Candidate for Slowing the Progression of Cardiovascular Aging
Yan Miao1, Wenting Wang2, Ye Liu1
1Department of Endocrinology and Metabolism, the Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, China.
Abstract:
Cardiovascular aging, characterized by endothelial dysfunction, arterial stiffening, and myocardial remodeling, is a major contributor to the development of age-related cardiovascular disease. Metformin, a first-line therapy for type 2 diabetes, has attracted interest as a promising geroprotective agent due to its ability to target several fundamental aging pathways. Mechanism: Beyond glucose-lowering effects, metformin may confer cardiovascular benefits through activation of AMP-activated protein kinase and inhibition of mitochondrial complex I. Preclinical work suggests these pathways enhance mitochondrial biogenesis, reduce oxidative stress, promote autophagy, and suppress chronic inflammation. Furthermore, metformin has been reported to modulate epigenetic clocks and support genomic stability, potentially mitigating several hallmarks of aging. Clinical Evidence: Although preclinical evidence is substantial, clinical findings remain heterogeneous. Observational studies and trials like UKPDS suggest cardiovascular benefits, whereas randomized controlled trials (RCTs) such as TAYSIDE, GIPS-III, REMOVAL and GOMET yielded inconsistent results for both clinical and surrogate cardiovascular endpoints. Result interpretations are often limited by relatively small sample sizes and short follow-up durations. Sex Differences and Limitations: Emerging evidence suggests sexual dimorphism in metformin responses, potentially influenced by hormonal status and pharmacokinetics. Additional challenges include the hormetic dose-response, the heterogeneity and frailty of older populations, and the absence of validated aging-specific cardiovascular endpoints. Metformin remains a promising candidate to mitigate cardiovascular aging. However, definitive conclusions regarding its efficacy in non-diabetic older adults will require large-scale, long-term RCTs incorporating aging-related biomarkers and stratification according to sex and metabolic status.
Insights
Metformin shows potential for mitigating cardiovascular aging by targeting aging pathways. However, clinical evidence is mixed, necessitating larger trials to confirm its benefits in non-diabetic older adults.
Area of Science:
- Gerontology and Cardiovascular Medicine
- Pharmacology of Aging
Background:
- Cardiovascular aging involves endothelial dysfunction and arterial stiffening, increasing age-related cardiovascular disease risk.
- Metformin, a type 2 diabetes drug, is being investigated for its potential geroprotective effects.
- Its mechanisms may involve AMP-activated protein kinase activation and mitochondrial complex I inhibition.
Purpose of the Study:
- To evaluate metformin's efficacy in mitigating cardiovascular aging.
- To explore its underlying mechanisms and clinical evidence.
Main Methods:
- Review of preclinical data on metformin's effects on aging pathways (mitochondrial biogenesis, oxidative stress, autophagy, inflammation, epigenetics).
- Analysis of clinical evidence from observational studies and randomized controlled trials (RCTs).
Main Results:
- Preclinical studies show metformin targets fundamental aging pathways, suggesting cardiovascular benefits.
- Clinical trial results are heterogeneous, with some observational studies showing benefits and RCTs yielding inconsistent outcomes.
- Limitations include small sample sizes, short follow-up, and potential sex differences in response.
Conclusions:
- Metformin is a promising candidate for cardiovascular aging mitigation.
- Definitive conclusions require large-scale, long-term RCTs with aging biomarkers and sex/metabolic stratification.
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