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Updated: Jun 29, 2026

Perturbations of Circulating miRNAs in Irritable Bowel Syndrome Detected Using a Multiplexed High-throughput Gene Expression Platform
Published on: November 30, 2016
MicroRNAs are differentially expressed in ulcerative colitis and alter expression of macrophage inflammatory
Feng Wu1, Michelle Zikusoka, Anil Trindade
1The Harvey M. and Lyn P. Meyerhoff Inflammatory Bowel Disease Center, Department of Medicine, Division of Gastroenterology, The Johns Hopkins University Medical Institutions, Baltimore, Maryland 21205-2195, USA.
Background & Aims:
Chronic inflammatory bowel diseases such as ulcerative colitis (UC) are associated with differential expression of genes involved in inflammation and tissue remodeling. MicroRNAs (miRNAs), which direct mRNA degradation and translational inhibition, influence a number of disease processes. We examined whether miRNAs are differentially expressed in UC tissues and are associated with expression of genes that regulate inflammation.
Methods:
miRNA expression was assessed in patients with active UC, inactive UC, Crohn's disease, irritable bowel syndrome, infectious colitis, and microscopic colitis, as well as in healthy subjects by microarray, quantitative reverse transcription-polymerase chain reaction and in situ hybridization analyses. Colonic epithelial cell (HT29) expression of miRNAs was assessed. Regulation of gene expression by miRNAs was assessed by luciferase reporter construct assays and transfection of specific miRNA mimics.
Results:
Active UC was associated with the differential expression of 11 miRNAs; 3 were significantly decreased and 8 were significantly increased in UC tissues. In situ hybridization analysis indicated that miR-192, an miRNA with decreased expression in active UC, was predominantly localized to colonic epithelial cells. Macrophage inflammatory peptide (MIP)-2 alpha, a chemokine expressed by epithelial cells, was identified as a target of miR-192. In colon epithelial cells, induction of MIP-2 alpha expression by tumor necrosis factor-alpha was accompanied by a concomitant reduction in miR-192 expression and miR-192 was observed to regulate the expression of MIP-2 alpha.
Conclusions:
These findings expand the known roles of miRNAs, indicating that tissues from patients with UC, and possibly other chronic inflammatory diseases, have altered miRNA expression patterns. These findings also demonstrate that miRNAs regulate colonic epithelial cell-derived chemokine expression.
Insights
MicroRNAs (miRNAs) show altered expression in ulcerative colitis (UC) tissues. These findings reveal that miRNAs regulate chemokine expression in colonic epithelial cells, impacting chronic inflammatory diseases.
Area of Science:
- Gastroenterology
- Molecular Biology
- Inflammation Research
Background:
- Chronic inflammatory bowel diseases like ulcerative colitis (UC) involve altered gene expression in inflammation and tissue remodeling.
- MicroRNAs (miRNAs) are key regulators of gene expression, influencing disease processes through mRNA degradation and translational inhibition.
Purpose of the Study:
- To investigate differential miRNA expression in UC tissues.
- To determine the association between miRNA expression and genes regulating inflammation in the colon.
Main Methods:
- miRNA expression profiling using microarrays and quantitative reverse transcription-polymerase chain reaction in patient samples (active UC, inactive UC, Crohn's disease, IBS, infectious colitis, microscopic colitis, healthy controls).
- In situ hybridization to localize specific miRNAs in colonic tissues.
- Luciferase reporter assays and miRNA mimic transfections to assess miRNA-mediated gene regulation in colonic epithelial cells (HT29).
Main Results:
- Eleven miRNAs were differentially expressed in active UC tissues (3 decreased, 8 increased).
- miR-192 expression was decreased in active UC and localized to colonic epithelial cells.
- Macrophage inflammatory peptide (MIP)-2 alpha was identified as a miR-192 target, with miR-192 regulating its expression in response to tumor necrosis factor-alpha.
Conclusions:
- UC tissues exhibit altered miRNA expression patterns, suggesting a broader role for miRNAs in chronic inflammatory diseases.
- miRNAs play a significant role in regulating chemokine expression derived from colonic epithelial cells.
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