
SummaryThe intestinal epithelium forms a barrier between the microbiota and the rest of the body. In addition, beyond acting as a physical barrier, the function of intestinal epithelial cells (IECs) in sensing and responding to microbial signals is increasingly appreciated and likely has numerous implications for the vast network of immune cells within and below the intestinal epithelium. IECs also respond to factors produced by immune cells, and these can regulate IEC barrier function, proliferation and differentiation, as well as influence the composition of the microbiota. The mechanisms involved in IEC–microbe–immune interactions, however, are not fully characterized. In this review, we explore the ability of IECs to direct intestinal homeostasis by orchestrating communication between intestinal microbes and mucosal innate and adaptive immune cells during physiological and inflammatory conditions. We focus primarily on the most recent findings and call attention to the numerous remaining unknowns regarding the complex crosstalk between IECs, the microbiota and intestinal immune cells.
Paneth Cells, Commensal Bacteria, Cell Communication, Adaptive Immunity, Tight Junctions, mucosal immunology, microbiota, Animals, Homeostasis, Humans, bacterial, Gut Microbiota, Intestinal Mucosa, Intraepithelial Lymphocytes, Immunity, Mucosal, Barrier Function, Inflammation, Regulatory T-Cells, epithelial cell, Microbiota, Host-Defense, Receptors, Pattern Recognition, Host-Pathogen Interactions, Chain Fatty-Acids, gut, Inflammatory-Bowel-Disease, Antimicrobial Peptides
Paneth Cells, Commensal Bacteria, Cell Communication, Adaptive Immunity, Tight Junctions, mucosal immunology, microbiota, Animals, Homeostasis, Humans, bacterial, Gut Microbiota, Intestinal Mucosa, Intraepithelial Lymphocytes, Immunity, Mucosal, Barrier Function, Inflammation, Regulatory T-Cells, epithelial cell, Microbiota, Host-Defense, Receptors, Pattern Recognition, Host-Pathogen Interactions, Chain Fatty-Acids, gut, Inflammatory-Bowel-Disease, Antimicrobial Peptides
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