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Updated: Jun 9, 2025

Murine Fecal Isolation and Microbiota Transplantation
Published on: May 26, 2023
Human and gut microbiota synergy in a metabolically active superorganism: a cardiovascular perspective
Matteo Antonio Russo1, Matteo Puccetti2, Claudio Costantini3
1San Raffaele IRCSS, Rome, Italy.
Insights
The gut microbiome influences cardiovascular disease (CVD) through immune activation. Tryptophan metabolites from gut bacteria impact inflammation and immune regulation, offering new therapeutic targets for CVD.
Area of Science:
- Immunology
- Microbiology
- Cardiology
Background:
- Cardiovascular disease (CVD) remains a leading cause of death despite advances.
- Understanding pathogenic mechanisms is crucial for effective CVD treatment.
- The gut microbiome's role in immune and inflammatory pathways is increasingly recognized in CVD.
Purpose of the Study:
- To review the role of the immune system and inflammation in CVD.
- To explore how gut microbiome-derived tryptophan metabolites influence cardioimmunopathology.
- To highlight potential microbiome-centered therapeutic strategies for CVD.
Main Methods:
- Literature review focusing on immuno-inflammatory activation in CVD.
- Analysis of the gut microbiome's influence on cardiovascular disorders.
- Examination of tryptophan metabolism and its convergence on the Aryl hydrocarbon Receptor (AhR).
Main Results:
- Gut microbiota metabolites, particularly tryptophan derivatives, modulate immune responses relevant to CVD.
- Immune system regulation and anti-inflammatory pathways mediated by gut microbiota are critical in various CVDs.
- Tryptophan metabolism links host and microbial pathways to immune homeostasis via the AhR.
Conclusions:
- The gut microbiome plays a significant role in CVD pathogenesis through immune modulation.
- Targeting gut microbiome-derived metabolites, like indoles, offers novel therapeutic avenues for CVD.
- Further research into microbiome-centered strategies is essential for combating cardiovascular disease.
Abstract:
Despite significant advances in diagnosis and treatment over recent decades, cardiovascular disease (CVD) remains one of the leading causes of morbidity and mortality in Western countries. This persistent burden is partly due to the incomplete understanding of fundamental pathogenic mechanisms, which limits the effectiveness of current therapeutic interventions. In this context, recent evidence highlights the pivotal role of immuno-inflammatory activation by the gut microbiome in influencing cardiovascular disorders, potentially opening new therapeutic avenues. Indeed, while atherosclerosis has been established as a chronic inflammatory disease of the arterial wall, accumulating data suggest that immune system regulation and anti-inflammatory pathways mediated by gut microbiota metabolites play a crucial role in a range of CVDs, including heart failure, pericardial disease, arrhythmias, and cardiomyopathies. Of particular interest is the emerging understanding of how tryptophan metabolism-by both host and microbiota-converges on the Aryl hydrocarbon Receptor (AhR), a key regulator of immune homeostasis. This review seeks to enhance our understanding of the role of the immune system and inflammation in CVD, with a focus on how gut microbiome-derived tryptophan metabolites, such as indoles and their derivatives, contribute to cardioimmunopathology. By exploring these mechanisms, we aim to facilitate the development of novel, microbiome-centered strategies for combating CVD.
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