Differential gene expression and gene-set enrichment analysis in Caco-2 monolayers during a 30-day timeline with

J M Robinson1, S Turkington1, S A Abey1

  • 1Digestive Disorder Unit, Biobehavioral Branch, Division of Intramural Research, National Institute of Nursing Research (NINR), NIH, DHHS , Bethesda , MD , USA.

Tissue Barriers
|August 24, 2019
PubMed

Insights

Culture age significantly impacts gene expression in intestinal epithelial cells, mimicking an epithelial-mesenchymal transition (EMT)-like signature. Dexamethasone treatment showed a counter-signal, affecting actomyosin genes and growth factor receptors.

Area of Science:

  • Molecular biology and cell biology
  • Gastroenterology and immunology

Background:

  • Glucocorticoids, like Dexamethasone, modulate inflammation via the glucocorticoid receptor (NR3C1).
  • Dexamethasone treats inflammatory bowel diseases, but its epithelial cell effects are less understood.
  • Previous studies show delayed Dexamethasone effects on Caco-2 cell permeability (>10 days).

Purpose of the Study:

  • To investigate the impact of culture age on gene expression in polarized Caco-2 epithelial cells.
  • To determine the effects of Dexamethasone treatment on epithelial cell gene expression over time.
  • To identify potential confounding variables in Dexamethasone's epithelial cell effects.

Main Methods:

  • Cultured polarized Caco-2 monolayers over a 30-day timecourse.
  • Administered continuous Dexamethasone treatment for approximately 15 days.
  • Analyzed differential gene expression using a 250-plex Nanostring nCounter® panel, focusing on tight-junction, cytoskeleton, and cancer-associated genes.
  • Utilized Nanostring nSolver for differential expression analysis, including a mixture-negative binomial model.

Main Results:

  • Identified a time-associated 'epithelial-mesenchymal transition-like' (EMT-like) signature.
  • Observed differential expression in actomyosin cytoskeleton, tight junction, integrin, and cell cycle pathway genes.
  • Dexamethasone treatment induced a subtle but significant counter-signal, suppressing actomyosin genes and altering growth factor receptor expression.

Conclusions:

  • Culture age is a significant confounding variable in studying Dexamethasone's effects on intestinal epithelial cells.
  • The aging Caco-2 cell model exhibits an EMT-like gene expression profile.
  • Dexamethasone exerts a complex, time-dependent influence on epithelial cell pathways, distinct from its effects on immune cells.

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