• Intern Emerg Med · Sep 2023

    Review

    Role of mucosal immunity and epithelial-vascular barrier in modulating gut homeostasis.

    • Antonio Di Sabatino, Giovanni Santacroce, Carlo Maria Rossi, Giacomo Broglio, and Marco Vincenzo Lenti.
    • Department of Internal Medicine and Medical Therapeutics, University of Pavia, Pavia, Italy. a.disabatino@smatteo.pv.it.
    • Intern Emerg Med. 2023 Sep 1; 18 (6): 163516461635-1646.

    AbstractThe intestinal mucosa represents the most extensive human barrier having a defense function against microbial and food antigens. This barrier is represented externally by a mucus layer, consisting mainly of mucins, antimicrobial peptides, and secretory immunoglobulin A (sIgA), which serves as the first interaction with the intestinal microbiota. Below is placed the epithelial monolayer, comprising enterocytes and specialized cells, such as goblet cells, Paneth cells, enterochromaffin cells, and others, each with a specific protective, endocrine, or immune function. This layer interacts with both the luminal environment and the underlying lamina propria, where mucosal immunity processes primarily take place. Specifically, the interaction between the microbiota and an intact mucosal barrier results in the activation of tolerogenic processes, mainly mediated by FOXP3+ regulatory T cells, underlying intestinal homeostasis. Conversely, the impairment of the mucosal barrier function, the alteration of the normal luminal microbiota composition (dysbiosis), or the imbalance between pro- and anti-inflammatory mucosal factors may result in inflammation and disease. Another crucial component of the intestinal barrier is the gut-vascular barrier, formed by endothelial cells, pericytes, and glial cells, which regulates the passage of molecules into the bloodstream. The aim of this review is to examine the various components of the intestinal barrier, assessing their interaction with the mucosal immune system, and focus on the immunological processes underlying homeostasis or inflammation.© 2023. The Author(s).

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