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Evaluation of microRNA expression in a sheep model for lung fibrosis
Udari Eshani Perera1, Habtamu B Derseh2, Sasika N V Dewage3
1School of Veterinary Science, The University of Melbourne, Parkville, VIC, Australia. udari.perera@unimelb.edu.au.
Background:
Idiopathic pulmonary fibrosis (IPF) is a chronic progressive fibroproliferative disorder that has one of the poorest prognoses amongst interstitial lung diseases. Recently, the finding of aberrant expression levels of miRNAs in IPF patients has drawn significant attention to the involvement of these molecules in the pathogenesis of this disease. Clarification of the differential expression of miRNAs in health and disease may identify novel therapeutic strategies that can be employed in the future to combat IPF. This study evaluates the miRNA expression profiles in a sheep model for lung fibrosis and compares them to the miRNA profiles of both IPF patients and the mouse bleomycin model for pulmonary fibrosis. Pathway enrichment analyses were performed on differentially expressed miRNAs to illustrate which biological mechanisms were associated with lung fibrosis.
Results:
We discovered 49 differentially expressed miRNAs in the sheep fibrosis model, in which 32 miRNAs were significantly down regulated, while 17 miRNAs were significantly upregulated due to bleomycin-induced lung injury. Moreover, the miRNA families miR-29, miR-26, miR-30, let-7, miR-21, miR-19, miR-17 and miR-199 were aberrantly expressed in both sheep and mouse models, with similar differential miRNAs expression observed in IPF cases. Importantly, 18 miRNAs were aberrantly expressed in both the sheep model and IPF patients, but not in mice.
Conclusion:
Together with pathway enrichment analyses, these results show that the sheep model can potentially be used to characterize previously unrecognized biological pathways associated with lung fibrosis.
Insights
A sheep model of lung fibrosis reveals distinct microRNA (miRNA) expression patterns. This model shows promise for identifying new biological pathways involved in idiopathic pulmonary fibrosis (IPF) and potential therapeutic targets.
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Animal Models
Background:
- Idiopathic pulmonary fibrosis (IPF) is a severe lung disease with poor prognosis.
- MicroRNAs (miRNAs) are increasingly recognized for their role in IPF pathogenesis.
- Understanding differential miRNA expression may lead to novel IPF therapies.
Purpose of the Study:
- To evaluate miRNA expression profiles in a sheep model of lung fibrosis.
- To compare these profiles with IPF patients and a mouse bleomycin model.
- To identify biological mechanisms associated with lung fibrosis via pathway enrichment analysis.
Main Methods:
- Induction of lung fibrosis in sheep using bleomycin.
- miRNA expression profiling in sheep, mice, and IPF patients.
- Differential expression analysis and pathway enrichment analysis.
Main Results:
- 49 differentially expressed miRNAs were identified in the sheep model (32 downregulated, 17 upregulated).
- Specific miRNA families (miR-29, miR-26, miR-30, let-7, miR-21, miR-19, miR-17, miR-199) were aberrantly expressed in both sheep and mouse models, and in IPF cases.
- 18 miRNAs were aberrantly expressed in both the sheep model and IPF patients, but not in mice.
Conclusions:
- The sheep model effectively recapitulates key miRNA expression changes seen in IPF.
- This model can be utilized to explore novel biological pathways in lung fibrosis.
- The identified miRNAs may serve as potential biomarkers or therapeutic targets for IPF.
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