Intestinal Stem Cell-on-Chip to Study Human Host-Microbiota Interaction.

Fatina Siwczak, Elise Loffet, Mathilda Kaminska, Hristina Koceva, Maxime M Mahe, Alexander S Mosig

Journal: Frontiers in immunology 2022;12():798552

PMID: 34938299

Abstract

The gut is a tubular organ responsible for nutrient absorption and harbors our intestinal microbiome. This organ is composed of a multitude of specialized cell types arranged in complex barrier-forming crypts and villi covered by a mucosal layer controlling nutrient passage and protecting from invading pathogens. The development and self-renewal of the intestinal epithelium are guided by niche signals controlling the differentiation of specific cell types along the crypt-villus axis in the epithelium. The emergence of microphysiological systems, or organ-on-chips, has paved the way to study the intestinal epithelium within a dynamic and controlled environment. In this review, we describe the use of organ-on-chip technology to control and guide these differentiation processes . We further discuss current applications and forthcoming strategies to investigate the mechanical processes of intestinal stem cell differentiation, tissue formation, and the interaction of the intestine with the microbiota in the context of gastrointestinal diseases.

Copyright © 2021 Siwczak, Loffet, Kaminska, Koceva, Mahe and Mosig.

Address: Center for Sepsis Control and Care & Institute of Biochemistry II, University Hospital Jena, Jena, Germany.; Université de Nantes, Inserm, TENS, The Enteric Nervous System in Gut and Brain Diseases, IMAD, Nantes, France.; Department of Pediatric General and Thoracic Surgery, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.; Department of Pediatrics, University of Cincinnati, Cincinnati, OH, United States.
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