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May 9, 2026International Journal of Innovative Technologies in Social Science0 citationsOpen Access

Gut Microbiota in Cardiovascular Diseases. From Mechanistic Insights to Therapeutic Perspectives

AMAntoni MajdaNSNatalia SitkoPMPaulina Makowska

Key Result

Gut dysbiosis contributes to the pathogenesis of cardiovascular diseases, and modulating the microbiota via diet, probiotics, prebiotics, or fecal transplant offers a promising therapeutic strategy.

Key Points

  • To explore the role of gut microbiota in cardiovascular diseases and potential therapeutic interventions.
  • Discussed various cardiovascular diseases like atherosclerosis and heart failure.
  • Reviewed observational studies reporting changes in gut microbiota in affected individuals.
  • Suggested therapeutic strategies including diet, probiotics, and fecal microbiota transplantation.
  • Gut dysbiosis contributes to chronic inflammation and cardiovascular disease development.
  • Altered gut microbiota has been linked with lipid metabolism and blood pressure regulation.
  • Current therapeutic approaches face challenges due to variability in microbiota and research methods.

Structured PICO

P
Population
Patients with cardiovascular diseases including atherosclerosis, arterial hypertension, heart failure, and cardiac arrhythmias
I
Intervention
Gut microbiota modulation (diet, probiotics, prebiotics, synbiotics, and fecal microbiota transplantation)

This review highlights the associative role of gut microbiota in cardiovascular diseases and outlines potential therapeutic strategies like probiotics and diet, while emphasizing the need for personalized medicine and causal studies.

Limitations

  • High variability in gut microbiome composition between individuals
  • Lack of clear causal evidence as most available studies are observational
  • Lack of standardization in research methods and DNA sequencing techniques
  • Safety considerations, such as the risk of pathogen transfer during fecal microbiota transplantation (FMT)
  • lack of standardized research methods
  • high interindividual variability in microbiota composition
  • limited number of causal studies

Abstract

Cardiovascular diseases remain the leading cause of death worldwide, prompting continuous efforts to understand and treat their pathogenesis. In recent years, increasing attention has been paid to the role of the gut microbiome as a potential factor influencing the functioning of the cardiovascular system. The gut microbiota produces numerous bioactive metabolites, such as short-chain fatty acids (SCFAs) and trimethylamine N-oxide (TMAO), which affect lipid metabolism, modulate systemic inflammation, and regulate blood pressure. SCFAs exhibit anti-inflammatory properties, whereas TMAO is associated with an increased risk of cardiovascular events. Gut dysbiosis, defined as an imbalance in the intestinal microbiome, promotes chronic inflammation, increased intestinal barrier permeability, and activation of mechanisms that contribute to the development of atherosclerosis. This paper discusses the role of the gut microbiome in the pathogenesis of selected cardiovascular diseases, such as atherosclerosis, arterial hypertension, heart failure, and cardiac arrhythmias. Findings from observational and cohort studies reported in numerous scientific publications indicate characteristic alterations in the gut microbiota of patients with these conditions, although these relationships are primarily associative in nature. The paper also presents potential strategies for modulating the gut microbiota through the use of a properly balanced diet, as well as probiotics, prebiotics, synbiotics, and fecal microbiota transplantation (FMT). Despite the growing body of evidence supporting a strong link between alterations in the gut microbiota and the development of cardiovascular diseases, there are still limitations in therapeutic approaches, including the lack of standardized research methods, high interindividual variability in microbiota composition, and a limited number of causal studies. Future research directions should therefore include the development of personalized medicine, the application of multi-omics techniques, and the use of postbiotics. A better understanding of the interactions between the gut microbiota and the development and progression of cardiovascular diseases may contribute to the development of more effective treatment strategies.

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Cite This Study

Majda et al. (2026) conducted a review in Cardiovascular Diseases. Gut microbiota modulation (diet, probiotics, prebiotics, synbiotics, FMT) was evaluated. Gut dysbiosis contributes to the pathogenesis of cardiovascular diseases, and modulating the microbiota via diet, probiotics, prebiotics, or fecal transplant offers a promising therapeutic strategy.

synapsesocial.com/papers/69fecf49b9154b0b82876405https://doi.org/10.31435/ijitss.1(49).2026.5403
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