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Статья

Mechanistic Insights Into the Association Between Gut Microbiota Diversity and Atherosclerosis, Acute Coronary Syndrome, and Peripheral Arterial Disease Progression

Amr Ali Mohamed Abdelgawwad El‐SehrawyInternal Medicine, Diabetes, Endocrinology and Metabolism Mansoura University Mansoura EgyptUsamah SayedFaculty of Allied Medical Sciences, Hourani Center for Applied Scientific Research Al‐Ahliyya Amman University Amman JordanZarina NasirovaDepartment of Internal Diseases and Cardiology No. 2 Samarkand State Medical University Samarkand UzbekistanQuvonch TursunovDepartment of Basic Medical Sciences Termez University of Economics and Service Termez UzbekistanOmer Qutaiba B. AllelaCollege of Pharmacy Alnoor University Mosul IraqLara Asim KzarDepartment of Pharmacy College of Pharmacy, The Islamic University Najaf IraqRajashree PanigrahiInstitute of Medical Sciences and Sum HospitalNeeraj BainsalUniversity Institute of Pharma Sciences Chandigarh University Mohali Punjab India
2026en
ABI

Аннотация

BACKGROUND: The gut microbiome has emerged as a potential contributor to cardiovascular diseases (CVDs), including atherosclerosis, acute coronary syndrome (ACS), and peripheral arterial disease (PAD). While observational studies link dysbiosis to CVD, causal relationships remain uncertain. METHODS: This narrative review synthesizes evidence from human observational studies, clinical interventions, and experimental models to distinguish association from mechanistic plausibility and clinical causality. Literature was searched through July 2026 in PubMed/MEDLINE, Web of Science, and Scopus. RESULTS: Microbial metabolites-including trimethylamine N-oxide (TMAO), short-chain fatty acids (SCFAs), bile acids, and lipopolysaccharide (LPS)-modulate endothelial function, immune cell programming, platelet activity, and plaque stability through receptor-mediated signaling and epigenetic regulation. SCFAs demonstrate potentially protective effects via GPCR and HDAC pathways, while TMAO is associated with atherothrombotic risk. However, much mechanistic evidence derives from preclinical studies. Heterogeneity from diet, geography, host characteristics, renal function, and medications substantially influences microbiota-CVD associations. CONCLUSION: The gut-vascular connection is biologically plausible, but definitive clinical causality remains unproven. Microbiome-directed therapies (dietary modulation, pre/pro/synbiotics, targeted metabolite inhibition) are investigational. Prospective, standardized, adequately powered human studies with clinically meaningful outcomes are essential before routine cardiovascular application.

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