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Published on: September 16, 2020
Retinal and circulating miRNA expression patterns in diabetic retinopathy: An in silico and in vivo approach
Chiara Bianca Maria Platania1, Rosa Maisto2, Maria Consiglia Trotta2
1Department of Biomedical and Biotechnological Sciences, School of Medicine, University of Catania, Catania, Italy.
Background And Purpose:
Diabetic retinopathy, a secondary complication of diabetes mellitus, can lead to irreversible vision loss. Currently, no treatment is approved for early phases of diabetic retinopathy. Modifications of the expression pattern of miRNAs could be involved in the early retinal damage of diabetic subjects. Therefore, we aimed at identification of dysregulated miRNAs-mRNA interactions that might be biomarkers and pharmacological targets for diagnosis and treatment of early diabetic retinopathy.
Methods:
A focused set of miRNAs was predicted through a bioinformatic analysis accessing to Gene Expression Omnibus dataset and enrichment of information approach (GENEMANIA-Cytoscape). Identification of miRNAs-mRNA interactions was carried out with miRNET analysis. Diabetes was induced in C57BL6J mice by streptozotocin and samples analysed at 5 and 10 weeks after diabetes induction. Retinal ultrastructure of diabetic mice was analysed through electron microscopy. We used Real-time PCR, western blot analysis, elisa, and immunohistochemistry to study expression of miRNAs and possible targets of dysregulated miRNAs.
Key Results:
We found that miR-20a-5p, miR-20a-3p, miR-20b, miR-106a-5p, miR-27a-5p, miR-27b-3p, miR-206-3p, and miR-381-3p were dysregulated in the retina and serum of diabetic mice. VEGF, brain-derived neurotrophic factor (BDNF), PPAR-α, and cAMP response element-binding protein 1 (CREB1) are targets of dysregulated miRNAs, which then modulated protein expression in diabetic retina. We found structural modifications in retinas from diabetic mice.
Conclusions And Implications:
Serum and retina of diabetic mice express eight dysregulated miRNAs, which modified the expression of VEGF, BDNF, PPAR-α, and CREB1, before vasculopathy in diabetic retinas.
Insights
Eight dysregulated microRNAs (miRNAs) and their mRNA targets were identified in diabetic mouse retinas and serum, offering potential biomarkers for early diabetic retinopathy diagnosis and treatment.
Area of Science:
- Ophthalmology
- Molecular Biology
- Genetics
Background:
- Diabetic retinopathy (DR) is a diabetes mellitus complication causing irreversible vision loss.
- No treatments exist for early-stage DR.
- MicroRNA (miRNA) expression changes may contribute to early retinal damage in diabetes.
Purpose of the Study:
- Identify dysregulated miRNA-mRNA interactions in early diabetic retinopathy.
- Explore potential biomarkers for DR diagnosis.
- Investigate novel pharmacological targets for DR treatment.
Main Methods:
- Bioinformatic analysis (GENEMANIA-Cytoscape, miRNET) to predict miRNA-mRNA interactions.
- Streptozotocin-induced diabetes in C57BL6J mice, with analysis at 5 and 10 weeks.
- Retinal ultrastructure analysis via electron microscopy.
- Quantitative real-time PCR, western blot, ELISA, and immunohistochemistry to assess miRNA and protein expression.
Main Results:
- Eight miRNAs (miR-20a-5p, miR-20a-3p, miR-20b, miR-106a-5p, miR-27a-5p, miR-27b-3p, miR-206-3p, miR-381-3p) were dysregulated in diabetic mouse retina and serum.
- Dysregulated miRNAs modulated protein expression of VEGF, BDNF, PPAR-α, and CREB1.
- Structural retinal modifications were observed in diabetic mice.
Conclusions:
- Specific miRNAs and their mRNA targets are altered in early diabetic retinopathy.
- These molecular changes precede vasculopathy, indicating potential as early biomarkers.
- Targeting these miRNA-mRNA interactions may offer new therapeutic strategies for diabetic retinopathy.
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