| Literature DB >> 23297865 |
Cameron M Smith1, Michael Z Michael, David I Watson, Grace Tan, David St J Astill, Richard Hummel, Damian J Hussey.
Abstract
BACKGROUND: Ulceration of the oesophageal squamous mucosa (ulcerative oesophagitis) is a pathological manifestation of gastro-oesophageal reflux disease, and is a major risk factor for the development of Barrett's oesophagus. Barrett's oesophagus is characterised by replacement of reflux-damaged oesophageal squamous epithelium with a columnar intestinal-like epithelium. We previously reported discovery of microRNAs that are differentially expressed between oesophageal squamous mucosa and Barrett's oesophagus mucosa. Now, to better understand early steps in the initiation of Barrett's oesophagus, we assessed the expression, location and function of these microRNAs in oesophageal squamous mucosa from individuals with ulcerative oesophagitis.Entities:
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Year: 2013 PMID: 23297865 PMCID: PMC3553039 DOI: 10.1186/1471-230X-13-4
Source DB: PubMed Journal: BMC Gastroenterol ISSN: 1471-230X Impact factor: 3.067
MiRNA expression in oesophageal squamous mucosa from subjects with ulcerative oesophagitis vs controls without gastro-oesophageal reflux disease
| miR-143 | 0.000157 | 0.000361 | 0.0101 |
| (0.000171, 0.000317) | (0.000160, 0.00130) | ||
| miR-145 | 0.00846 | 0.0177 | 0.0115 |
| (0.00458, 0.0101) | (0.00956, 0.0363) | ||
| miR-205 | 0.6721 | 1.73 | 0.0026 |
| (0.481, 1.061) | (1.31, 2.54) | ||
| miR-21 | 0.604 | 0.459 | 0.7133 |
| (0.304, 0.977) | (0.233, 1.25) | ||
| miR-194 | 0.000138 | 0.000134 | 0.9705 |
| (0.000101, 0.000213) | (9.77-05, 0.000238) | ||
| miR-203 | 0.169 | 0.27 | 0.1138 |
| (0.135, 0.265) | (0.206, 0.336) | ||
| miR-215 | 5.99-05 | 5.45-05 | 0.7132 |
| (−0.000180, 0.000716) | (3.63-5, 0.000128) |
Relative expression values are expressed as median (95% confidence intervals).
Figure 1miRNA in situ hybridisation analysis in oesophageal mucosal biopsies from patients with ulcerative oesophagitis. A: Staining with Haematoxylin and Eosin. The basal layer, papillae and differentiated squamous epithelium are clearly visible. B, C, D and E: Hybridisation with LNA-probes for miRNAs miR-143 (B), miR-145 (C) and miR-205 (D), and LNA-negative control (E). No hybridisation was observed with the LNA-negative control probe. A region from each section has been magnified 100x. In A, rounded nuclei in the oesophageal epithelium are evident. B, C &D depict the punctate nuclear staining observed for each miRNA.
Figure 2Normalised median fold increase in miR-143, miR-145 and miR-205 levels at 24 hours after transfection with respective mimics. The fold increase in miRNA levels was calculated as the ratio of miRNA expression in Het-1A cells transfected with a miRNA mimic compared with miRNA expression in Het-1A cells transfected with the negative control duplex.
Figure 3Cell proliferation (A) and apoptosis (B) levels in Het-1A cells 48 h after transfection with miR-143, miR-145 or miR-205. Data are represented as a percentage of the negative control. Decreased proliferation (A) and increased apoptosis (B) were observed for all miRNAs. For all negative control vs miRNA mimic comparisons p<0.05 (Mann–Whitney test).