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Updated: Jul 2, 2025

Murine Fecal Isolation and Microbiota Transplantation
Published on: May 26, 2023
Assessment of the causal relationship between gut microbiota and cardiovascular diseases: a bidirectional Mendelian
Xiao-Ce Dai1, Yi Yu1, Si-Yu Zhou1
1Department of Cardiology, The Second Affiliated Hospital, School of Medicine, Zhejiang University, State Key Laboratory of Transvascular Implantation Devices, Cardiovascular Key Laboratory of Zhejiang Province, Hangzhou, Zhejiang, 310009, China.
Insights
This study reveals specific gut bacteria influence cardiovascular disease (CVD) risk. Certain bacteria offer protection, while others increase risk, suggesting potential probiotic or prebiotic interventions for CVD prevention.
Area of Science:
- Genetics
- Microbiology
- Cardiovascular Medicine
Background:
- Gut microbiota composition is linked to cardiovascular diseases (CVDs).
- The causal relationship between gut microbiota and CVDs requires further elucidation.
- Understanding this link is crucial for exploring the pathogenic role of gut microbiota in CVDs.
Purpose of the Study:
- To determine the causal relationship between gut microbiota and cardiovascular diseases (CVDs).
- To investigate the specific pathogenic roles of gut microbiota in the development of CVDs.
Main Methods:
- A two-sample Mendelian randomization study design was employed.
- Utilized genome-wide association studies (GWAS) data for gut microbiota (n=14,306) and CVDs (n=2,207,591).
- Applied various statistical methods including inverse variance weighting and MR Egger, alongside analyses for pleiotropy and heterogeneity.
Main Results:
- Identified specific gut bacteria with protective or detrimental causal effects on CVDs.
- Howardella, Intestinibacter, Lachnospiraceae, Turicibacter, Holdemania, and Odoribacter showed protective effects against atrial fibrillation.
- Similar protective or detrimental effects were observed for coronary artery disease, myocardial infarction, ischemic stroke, and hypertension.
Conclusions:
- Gut microbiota plays a significant role in cardiovascular diseases (CVDs).
- Modulating gut bacterial populations (e.g., via probiotics) may offer a protective strategy against specific CVDs.
- Further research is needed to translate these findings into clinical applications for CVD prevention and treatment.
Background:
Previous studies have shown an association between gut microbiota and cardiovascular diseases (CVDs). However, the underlying causal relationship remains unclear. This study aims to elucidate the causal relationship between gut microbiota and CVDs and to explore the pathogenic role of gut microbiota in CVDs.
Methods:
In this two-sample Mendelian randomization study, we used genetic instruments from publicly available genome-wide association studies, including single-nucleotide polymorphisms (SNPs) associated with gut microbiota (n = 14,306) and CVDs (n = 2,207,591). We employed multiple statistical analysis methods, including inverse variance weighting, MR Egger, weighted median, MR pleiotropic residuals and outliers, and the leave-one-out method, to estimate the causal relationship between gut microbiota and CVDs. Additionally, we conducted multiple analyses to assess horizontal pleiotropy and heterogeneity.
Results:
GWAS summary data were available from a pooled sample of 2,221,897 adult and adolescent participants. Our findings indicated that specific gut microbiota had either protective or detrimental effects on CVDs. Notably, Howardella (OR = 0.955, 95% CI: 0.913-0.999, P = .05), Intestinibacter (OR = 0.908, 95% CI:0.831-0.993, P = .03), Lachnospiraceae (NK4A136 group) (OR = 0.904, 95% CI:0.841-0.973, P = .007), Turicibacter (OR = 0.904, 95% CI: 0.838-0.976, P = .01), Holdemania (OR, 0.898; 95% CI: 0.810-0.995, P = .04) and Odoribacter (OR, 0.835; 95% CI: 0.710-0.993, P = .04) exhibited a protective causal effect on atrial fibrillation, while other microbiota had adverse causal effects. Similar effects were observed with respect to coronary artery disease, myocardial infarction, ischemic stroke, and hypertension. Furthermore, reversed Mendelian randomization analyses revealed that atrial fibrillation and ischemic stroke had causal effects on certain gut microbiotas.
Conclusion:
Our study underscored the importance of gut microbiota in the context of CVDs and lent support to the hypothesis that increasing the abundance of probiotics or decreasing the abundance of harmful bacterial populations may offer protection against specific CVDs. Nevertheless, further research is essential to translate these findings into clinical practice.
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