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Updated: Feb 13, 2026

A Gut-on-a-Chip Model to Study the Gut Microbiome-Nervous System Axis
Published on: July 28, 2023
The gut microbiome and elevated cardiovascular risk in obesity and autoimmunity
Lora J Kasselman1, Nicholas A Vernice1, Joshua DeLeon1
1Winthrop Research Institute and Department of Medicine, NYU Winthrop Hospital, Mineola, NY, USA.
Insights
Gut microbiome alterations are linked to chronic inflammation and cardiovascular disease in obesity and autoimmune conditions like type 1 diabetes, rheumatoid arthritis, and lupus. Probiotic interventions show promise in mitigating these risks.
Area of Science:
- Microbiome research
- Immunology
- Cardiovascular science
Background:
- Cardiovascular disease (CVD) is a leading cause of death in individuals with obesity and autoimmune disorders.
- Significant residual CVD risk persists despite current treatments.
- Obesity, type 1 diabetes mellitus (T1DM), rheumatoid arthritis (RA), and systemic lupus erythematosus (SLE) share links to chronic inflammation and altered gut microbiomes.
Purpose of the Study:
- To review the contribution of unique gut microbiome profiles to elevated cardiovascular risk in obesity, T1DM, RA, and SLE.
- To discuss the mechanisms linking gut dysbiosis to chronic inflammation and CVD.
Main Methods:
- Literature review of studies investigating gut microbiome composition in obesity, T1DM, RA, and SLE.
- Analysis of microbial and metabolic alterations and their downstream inflammatory effects.
- Examination of sex-based differences in microbiome-associated autoimmunity.
Main Results:
- Common microbiome shifts include altered Firmicutes/Bacteroidetes ratios and changes in specific species like Prevotella copri.
- These shifts promote gut inflammation, increased intestinal permeability, and elevated TMAO levels.
- Microbiome composition may influence sex differences in autoimmunity.
Conclusions:
- Gut microbiome dysbiosis is a key factor in the chronic inflammation and elevated CVD risk associated with obesity and autoimmune diseases.
- Probiotic interventions, such as Lactobacilli, may restore gut health, reduce inflammation, and lower CVD risk.
- Targeting the gut microbiota represents a potential therapeutic strategy for managing these conditions.
Abstract:
Cardiovascular disease associated with obesity and autoimmunity is the leading cause of death in these populations and significant residual risk remains despite current treatment approaches. Obesity, type 1 diabetes mellitus (T1DM), rheumatoid arthritis (RA), and systemic lupus erythematosus (SLE) are linked to chronic inflammation, and subjects with these disorders have characteristic shifts in their gut microbiome composition. Recent data suggest that alterations in gut microbial and metabolic composition may be responsible, in part, for induction of chronic inflammation, thus promoting cardiovascular disease. Common microbiome changes observed in obesity, T1DM, RA, and SLE include a decrease in the ratio of bacteria, such as Gram-positive Firmicutes to Gram-negative Bacteroidetes, as well as an overabundance or depletion of certain species, including Prevotella copri. The consequent effects of these shifts include alterations in the metabolic composition of the gut, hyper-activation of toll-like receptor 4 (TLR-4), upregulation of inflammatory pathways, e.g. c-Jun N-terminal kinase and nuclear factor-kappa B (NFκB), increased intestinal permeability, increased C-reactive protein, and increased levels of trimethylamine N-oxide (TMAO). Differential microbiome compositions may also explain sex differences observed in autoimmunity, where a male gut microbiome promotes anti-inflammatory processes as compared to a female pro-inflammatory gut microbiome. Intervention at the level of the microbiota appears to attenuate symptoms in these inflammatory syndromes with probiotic treatment, such as Lactobacilli, playing a uniquely beneficial role in restoring intestinal health, decreasing inflammation, and reducing cardiovascular disease. This review will discuss obesity, T1DM, RA, and SLE in the context of how each unique microbiome profile contributes to elevated cardiovascular risk.
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