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Synapse
June 16, 20260 citations

Current evidence of gut microbiota dysbiosis and its role in atrial fibrillation and cardiovascular diseases.

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MSMaria SzwarkowskaKSKamil Aleksander SobieszekKBKrzysztof Bartuś

Key Result

Gut microbiota dysbiosis and derived metabolites like TMAO and LPS promote inflammatory pathways and atrial fibrosis, contributing to the development and progression of atrial fibrillation.

Key Points

  • The aim is to explore the relationship between gut microbiota dysbiosis and atrial fibrillation, including underlying mechanisms and potential treatments.
  • Review of current evidence on gut microbiota alterations related to atrial fibrillation.
  • Analysis of microbiota-derived metabolites and their role in cardiovascular physiology.
  • Evaluation of therapeutic strategies including dietary interventions.
  • Patients with AF show reduced microbial diversity and shifts towards pro-inflammatory bacteria.
  • Metabolites like TMAO and LPS are linked to oxidative stress and inflammation, promoting arrhythmogenic effects.
  • Short-chain fatty acids may have protective effects, stabilizing cardiac function.

Structured PICO

P
Population
Patients with atrial fibrillation and cardiovascular diseases

Gut microbiota dysbiosis and derived metabolites play a significant role in the pathogenesis of atrial fibrillation through inflammatory and structural remodeling pathways, highlighting the gut-heart axis as a potential therapeutic target.

Abstract

The human gut microbiota has emerged recently as an important regulator of cardiovascular physiology through its effects on metabolism, immune signaling, and systemic inflammation. Increasing evidence suggests that alterations in intestinal microbial composition (dysbiosis) may contribute to the development and progression of atrial fibrillation (AF). This review summarizes current evidence on gut microbiota alterations, microbiota-derived metabolites, and their mechanistic links to atrial fibrillation pathogenesis and potential therapeutic strategies. Patients with AF demonstrate reduced microbial diversity and characteristic shifts in bacterial taxa, including depletion of short-chain fatty acid-producing bacteria and enrichment of potentially pro-inflammatory microorganisms. Gut microbiota-derived metabolites appear to play a key role in mediating these effects. Trimethylamine N-oxide (TMAO), lipopolysaccharide (LPS), and phenylacetylglutamine (PAGln) promote oxidative stress, endothelial dysfunction, and activation of inflammatory pathways such as NF-κB and the NLRP3 inflammasome, leading to atrial fibrosis, electrical remodeling, and increased arrhythmogenic susceptibility. In contrast, short-chain fatty acids exert anti-inflammatory and cardioprotective effects that may stabilize cardiac electrophysiology. Importantly, the relationship between gut microbiota and atrial fibrillation appears to be bidirectional, as cardiovascular disease itself may influence intestinal barrier integrity and microbial composition. Understanding the gut-heart axis may open new perspectives for risk stratification and therapeutic strategies, including dietary interventions and microbiome-targeted therapies. Further clinical studies are required to determine whether modulation of the gut microbiota can effectively prevent or modify the course of atrial fibrillation.

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Cite This Study

Szwarkowska et al. (2026) conducted a review in Atrial fibrillation and cardiovascular diseases. Gut microbiota dysbiosis was evaluated. Gut microbiota dysbiosis and derived metabolites like TMAO and LPS promote inflammatory pathways and atrial fibrosis, contributing to the development and progression of atrial fibrillation.

synapsesocial.com/papers/6a31572eaf7cf7f8256b3db4https://doi.org/10.24425/fmc.2026.158994
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Association of gut microbiome dysbiosis with the progression of atrial fibrillation: A systematic review2023 · 38 citations
  2. 2Correlation Between Dysbiosis and Atrial Fibrillation: What’s New?2025
  3. 3Protective Effect and Mechanism of Short‐Chain Fatty Acids, the Metabolites of Gut Microbiota, on Atrial Fibrillation2026 · 2 citations
  4. 4Gut Dysbiosis and Arrhythmogenesis: The Potential Role of Microbial Alterations and Small Intestinal Bacterial Overgrowth in Cardiac Arrhythmias2026
  5. 5Age-related atrial fibrillation: is there a role for the gut microbiome?2025