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Hydrocortisone induces changes in gene expression and differentiation in immature human enterocytes.


ABSTRACT: It is known that functional maturation of the small intestine occurring during the weaning period is facilitated by glucocorticoids (such as hydrocortisone, HC), including an increased expression of digestive hydrolases. However, the molecular mechanisms are not well understood, particularly in the human gut. Here we report a microarray analysis of HC-induced changes in gene expression in H4 cells (a well-characterized human fetal small intestinal epithelial cell line). This study identified a large number of HC-regulated genes, some involved in metabolism, cell cycle regulation, cell-cell or cell-extracellular matrix communication. HC also regulates the expression of genes important for cell maturation such as development of cell polarity, tight junction formation, and interactions with extracellular matrices. Using human small intestinal xenografts, we also show that HC can regulate the expression of genes important for intestinal epithelial cell maturation. Our dataset may serve as a useful resource for understanding and dissecting the molecular mechanisms of intestinal epithelial cell maturation.

SUBMITTER: Lu L 

PROVIDER: S-EPMC3064117 | biostudies-literature | 2011 Mar

REPOSITORIES: biostudies-literature

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Hydrocortisone induces changes in gene expression and differentiation in immature human enterocytes.

Lu Lei L   Li Tiantian T   Williams Graham G   Petit Elizabeth E   Borowsky Mark M   Walker W Allan WA  

American journal of physiology. Gastrointestinal and liver physiology 20101209 3


It is known that functional maturation of the small intestine occurring during the weaning period is facilitated by glucocorticoids (such as hydrocortisone, HC), including an increased expression of digestive hydrolases. However, the molecular mechanisms are not well understood, particularly in the human gut. Here we report a microarray analysis of HC-induced changes in gene expression in H4 cells (a well-characterized human fetal small intestinal epithelial cell line). This study identified a l  ...[more]

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