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Updated: May 6, 2026

MicroRNA In situ Hybridization for Formalin Fixed Kidney Tissues
Published on: November 30, 2013
MicroRNA-214 antagonism protects against renal fibrosis
Laura Denby1, Vasudev Ramdas, Ruifang Lu
1BHF Glasgow Cardiovascular Research Centre, Institute of Cardiovascular and Medical Sciences, University of Glasgow, Glasgow, United Kingdom;
Abstract:
Renal tubulointerstitial fibrosis is the common end point of progressive renal disease. MicroRNA (miR)-214 and miR-21 are upregulated in models of renal injury, but the function of miR-214 in this setting and the effect of its manipulation remain unknown. We assessed the effect of inhibiting miR-214 in an animal model of renal fibrosis. In mice, genetic deletion of miR-214 significantly attenuated interstitial fibrosis induced by unilateral ureteral obstruction (UUO). Treatment of wild-type mice with an anti-miR directed against miR-214 (anti-miR-214) before UUO resulted in similar antifibrotic effects, and in vivo biodistribution studies demonstrated that anti-miR-214 accumulated at the highest levels in the kidney. Notably, in vivo inhibition of canonical TGF-β signaling did not alter the regulation of endogenous miR-214 or miR-21. Whereas miR-21 antagonism blocked Smad 2/3 activation, miR-214 antagonism did not, suggesting that miR-214 induces antifibrotic effects independent of Smad 2/3. Furthermore, TGF-β blockade combined with miR-214 deletion afforded additional renal protection. These phenotypic effects of miR-214 depletion were mediated through broad regulation of the transcriptional response to injury, as evidenced by microarray analysis. In human kidney tissue, miR-214 was detected in cells of the glomerulus and tubules as well as in infiltrating immune cells in diseased tissue. These studies demonstrate that miR-214 functions to promote fibrosis in renal injury independent of TGF-β signaling in vivo and that antagonism of miR-214 may represent a novel antifibrotic treatment in the kidney.
Insights
MicroRNA-214 promotes kidney fibrosis through a pathway independent of TGF-β signaling. Inhibiting microRNA-214 offers a potential new treatment for renal fibrosis.
Area of Science:
- Nephrology
- Molecular Biology
- Genetics
Background:
- Renal tubulointerstitial fibrosis is a common outcome of progressive kidney disease.
- MicroRNA-214 (miR-214) is upregulated in renal injury models, but its role is unclear.
Purpose of the Study:
- To investigate the function of miR-214 in renal fibrosis.
- To assess the therapeutic potential of inhibiting miR-214 in a kidney fibrosis model.
Main Methods:
- Utilized a mouse model of unilateral ureteral obstruction (UUO) to induce renal fibrosis.
- Employed genetic deletion of miR-214 and anti-miR-214 treatment.
- Analyzed TGF-β signaling, Smad 2/3 activation, and gene expression via microarray.
- Examined miR-214 expression in human kidney tissues.
Main Results:
- Genetic deletion or inhibition of miR-214 significantly attenuated renal interstitial fibrosis post-UUO.
- Anti-miR-214 accumulated in the kidney, demonstrating targeted delivery.
- miR-214 antagonism exerted antifibrotic effects independently of canonical TGF-β/Smad 2/3 signaling.
- Combined TGF-β blockade and miR-214 deletion provided enhanced renal protection.
- Microarray analysis revealed miR-214 depletion broadly modulated the transcriptional response to injury.
Conclusions:
- miR-214 promotes renal fibrosis through a mechanism distinct from TGF-β signaling.
- Antagonism of miR-214 represents a promising novel therapeutic strategy for kidney fibrosis.
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