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Updated: Aug 22, 2025

Murine Fecal Isolation and Microbiota Transplantation
Published on: May 26, 2023
Diversities in the Gut Microbial Patterns in Patients with Atherosclerotic Cardiovascular Diseases and Certain Heart
Oxana M Drapkina1, German A Ashniev2, Olga A Zlobovskaya2
1National Medical Research Center for Therapy and Preventive Medicine, 101990 Moscow, Russia.
Insights
Gut microbiota composition differs in cardiovascular disease patients. Specific bacterial changes were observed in atherosclerotic cardiovascular disease (ASCVD), heart failure with reduced ejection fraction (HFrEF), and heart failure with preserved ejection fraction (HFpEF) compared to controls.
Area of Science:
- Microbiome research
- Cardiovascular disease pathogenesis
- Gut microbiota analysis
Background:
- Understanding cardiovascular disease (CVD) pathogenesis requires insights into contributing factors.
- The gut microbiota's influence on systemic health, including cardiovascular conditions, is an area of significant research interest.
- Investigating specific gut microbial alterations in various heart diseases is crucial for advancing treatment strategies.
Purpose of the Study:
- To investigate and compare the gut microbiota composition in patients with atherosclerotic cardiovascular disease (ASCVD), heart failure with reduced ejection fraction (HFrEF), and heart failure with preserved ejection fraction (HFpEF).
- To compare the gut microbiota of these patient groups against a control group of individuals without cardiovascular disease.
- To evaluate the efficacy of multiple methods (bacterial culture, 16S rRNA gene sequencing, qPCR) in assessing gut microbiota changes.
Main Methods:
- Fecal microbiota analysis using bacterial cultures to quantify living organisms.
- Next-generation sequencing (NGS) of the 16S rRNA gene (V3-V4 region) for taxonomic composition.
- Quantitative polymerase chain reaction (qPCR) for targeted taxa abundance assessment.
Main Results:
- A decrease in *Enterococcus faecium* and *Enterococcus faecalis* was observed across all disease groups compared to controls.
- The HFrEF group showed increased *Streptococcus sanguinus* and *Streptococcus parasanguinis*, with elevated Streptococcaceae family abundance.
- Increased Erysipelotrichaceae family abundance was noted in all disease groups; Lactobacillaceae family was elevated in ASCVD and HFrEF groups, with *Lactobacillus plantarum* increase confirmed by qPCR.
Conclusions:
- Gut microbiota alterations are associated with cardiovascular diseases, including ASCVD, HFrEF, and HFpEF.
- Specific bacterial taxa changes, such as decreased *Enterococcus* and increased *Streptococcus* and *Lactobacillus* species, correlate with disease states.
- A comprehensive approach utilizing multiple analytical methods is recommended for robust gut microbiota analysis in cardiovascular research.
Abstract:
To continue progress in the treatment of cardiovascular disease, there is a need to improve the overall understanding of the processes that contribute to the pathogenesis of cardiovascular disease (CVD). Exploring the role of gut microbiota in various heart diseases is a topic of great interest since it is not so easy to find such reliable connections despite the fact that microbiota undoubtedly affect all body systems. The present study was conducted to investigate the composition of gut microbiota in patients with atherosclerotic cardiovascular disease (ASCVD) and heart failure syndromes with reduced ejection fraction (HFrEF) and HF with preserved EF (HFpEF), and to compare these results with the microbiota of individuals without those diseases (control group). Fecal microbiota were evaluated by three methods: living organisms were determined using bacterial cultures, total DNA taxonomic composition was estimated by next generation sequencing (NGS) of 16S rRNA gene (V3-V4) and quantitative assessment of several taxa was performed using qPCR (quantitative polymerase chain reaction). Regarding the bacterial culture method, all disease groups demonstrated a decrease in abundance of Enterococcus faecium and Enterococcus faecalis in comparison to the control group. The HFrEF group was characterized by an increased abundance of Streptococcus sanguinus and Streptococcus parasanguinis. NGS analysis was conducted at the family level. No significant differences between patient's groups were observed in alpha-diversity indices (Shannon, Faith, Pielou, Chao1, Simpson, and Strong) with the exception of the Faith index for the HFrEF and control groups. Erysipelotrichaceae were significantly increased in all three groups; Streptococcaceae and Lactobacillaceae were significantly increased in ASCVD and HFrEF groups. These observations were indirectly confirmed with the culture method: two species of Streptococcus were significantly increased in the HFrEF group and Lactobacillus plantarum was significantly increased in the ASCVD group. The latter observation was also confirmed with qPCR of Lactobacillus sp. Acidaminococcaceae and Odoribacteraceae were significantly decreased in the ASCVD and HFrEF groups. Participants from the HFpEF group showed the least difference compared to the control group in all three study methods. The patterns found expand the knowledge base on possible correlations of gut microbiota with cardiovascular diseases. The similarities and differences in conclusions obtained by the three methods of this study demonstrate the need for a comprehensive approach to the analysis of microbiota.
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