Impact of Bacterial Metabolites on Gut Barrier Function and Host Immunity: A Focus on Bacterial Metabolism and Its Relevance for Intestinal Inflammation

Влияние бактериальных метаболитов на барьерную функцию кишечника и иммунитет хозяина: акцент на бактериальном метаболизме и его значении для воспаления кишечника
Naschla Gasaly, Paul de Vos, Marcela A. Hermoso
2021-05-26

aryl hydrocarbon receptorbacterial metabolitesgut microbiotaintestinal epithelial barriershort-chain fatty acids
The diverse and dynamic microbial community of the human gastrointestinal tract plays a vital role in health, with gut microbiota supporting the development and function of the gut immune barrier. Crosstalk between microbiota-gut epithelium and the gut immune system determine the individual health status, and any crosstalk disturbance may lead to chronic intestinal conditions, such as inflammatory bowel diseases (IBD) and celiac disease. Microbiota-derived metabolites are crucial mediators of host-microbial interactions. Some beneficially affect host physiology such as short-chain fatty acids (SCFAs) and secondary bile acids. Also, tryptophan catabolites determine immune responses, such as through binding to the aryl hydrocarbon receptor (AhR). AhR is abundantly present at mucosal surfaces and when activated enhances intestinal epithelial barrier function as well as regulatory immune responses. Exogenous diet-derived indoles (tryptophan) are a major source of endogenous AhR ligand precursors and together with SCFAs and secondary bile acids regulate inflammation by lowering stress in epithelium and gut immunity, and in IBD, AhR expression is downregulated together with tryptophan metabolites. Here, we present an overview of host microbiota-epithelium- gut immunity crosstalk and review how microbial-derived metabolites contribute to host immune homeostasis. Also, we discuss the therapeutic potential of bacterial catabolites for IBD and celiac disease and how essential dietary components such as dietary fibers and bacterial tryptophan catabolites may contribute to intestinal and systemic homeostasis.
1
Diet-derived indoles, short-chain fatty acids, and secondary bile acids reduce epithelial and immune stress and help regulate intestinal inflammation.
2
Gut microbiota–epithelium–immune crosstalk is essential for intestinal health, while its disruption may contribute to IBD and celiac disease.
3
Inflammatory bowel disease is associated with downregulated aryl hydrocarbon receptor expression and reduced tryptophan metabolites, highlighting bacterial catabolites as potential therapeutic targets.
4
Microbiota-derived metabolites, including short-chain fatty acids and secondary bile acids, beneficially regulate host physiology and immune homeostasis.
5
Tryptophan catabolites activate the aryl hydrocarbon receptor, enhancing intestinal epithelial barrier function and regulatory immune responses.

Gut microbiota-derived metabolites and their interactions with the intestinal epithelium and immune system

Effects of bacterial metabolites on intestinal barrier function, host immune homeostasis, and inflammation, including their therapeutic relevance for IBD and celiac disease

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2021-05-26
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Authors
Naschla Gasaly
Paul de Vos
Marcela A. Hermoso
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