Microbiota controls the homeostasis of glial cells in the gut lamina propria

Publication date

2015-01-21

Authors

Kabouridis, Panagiotis S
Lasrado, Reena
McCallum, Sarah
Chng, Song Hui
Snippert, HJGORCID 0000-0002-4189-5213ISNI 0000000397056790
Clevers, HansISNI 0000000043961208
Pettersson, Sven
Pachnis, Vassilis

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

The intrinsic neural networks of the gastrointestinal tract are derived from dedicated neural crest progenitors that colonize the gut during embryogenesis and give rise to enteric neurons and glia. Here, we study how an essential subpopulation of enteric glial cells (EGCs) residing within the intestinal mucosa is integrated into the dynamic microenvironment of the alimentary tract. We find that under normal conditions colonization of the lamina propria by glial cells commences during early postnatal stages but reaches steady-state levels after weaning. By employing genetic lineage tracing, we provide evidence that in adult mice the network of mucosal EGCs is continuously renewed by incoming glial cells originating in the plexi of the gut wall. Finally, we demonstrate that both the initial colonization and homeostasis of glial cells in the intestinal mucosa are regulated by the indigenous gut microbiota.

Keywords

Animals, Cell Differentiation, Homeostasis, Intestinal Mucosa, Intestines, Mice, Microbiota, Mucous Membrane, Neuroglia, Submucous Plexus, Journal Article, Research Support, Non-U.S. Gov't

Citation

Kabouridis, P S, Lasrado, R, McCallum, S, Chng, S H, Snippert, HJG, Clevers, H, Pettersson, S & Pachnis, V 2015, 'Microbiota controls the homeostasis of glial cells in the gut lamina propria', Neuron, vol. 85, no. 2, pp. 289-295. https://doi.org/10.1016/j.neuron.2014.12.037