Intestinal Regeneration: Regulation by the Microenvironment
Publication date
2020-08-24
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taverne
Abstract
Damage to the intestinal stem cell niche can result from mechanical stress, infections, chronic inflammation or cytotoxic therapies. Progenitor cells can compensate for insults to the stem cell population through dedifferentiation. The microenvironment modulates this regenerative response by influencing the activity of signaling pathways, including Wnt, Notch, and YAP/TAZ. For instance, mesenchymal cells and immune cells become more abundant after damage and secrete signaling molecules that promote the regenerative process. Furthermore, regeneration is influenced by the nutritional state, microbiome, and extracellular matrix. Here, we review how all these components cooperate to restore epithelial homeostasis in the intestine after injury.
Keywords
cellular plasticity, colon, dedifferentiation, epithelial damage, immune cells, intestine, Lgr5, mesenchymal cells, niche, stem cell, Taverne, Molecular Biology, General Biochemistry,Genetics and Molecular Biology, Developmental Biology, Cell Biology
Citation
Hageman, J H, Heinz, M C, Kretzschmar, K, van der Vaart, J, Clevers, H & Snippert, H J G 2020, 'Intestinal Regeneration : Regulation by the Microenvironment', Developmental Cell, vol. 54, no. 4, pp. 435-446. https://doi.org/10.1016/j.devcel.2020.07.009