| Literature DB >> 29399058 |
Kai-Bao Ji1, Ling Ling1, Qian Zhang2, Jing-Jing Chou2, Xia-Ling Yang2, Zhi-Hong Wang2, Li Yin2, Shu-Fang Wu2, Yi-Feng Yu2.
Abstract
Alkali burns of the cornea may lead to permanent visual impairment or complete blindness. In the current study, the role of microRNA 296 (miR-296) was explored in mouse corneal neovascularization induced by alkali burns. An alkali burn model in Balb/c mice was developed to study chemical corneal injuries. The expression of the miR-296 gene was measured by reverse-transcription-quantitative polymerase chain reaction. Fibroblast growth factor 23 (FGF23) protein expression was measured by western blot analysis. Possible impacted pathways were analyzed by Kyoto Encyclopedia of Genes and Genomes pathway analysis. miR-296 gene expression was examined following chemical corneal injury and it was demonstrated that different topical eye medications decreased miR-296 gene expression. miR-296 may participate in cytokine-cytokine receptor interaction pathways to influence corneal inflammatory responses. It was also revealed that FGF23 was expressed following chemical corneal injury and that different treatments with topical eye drops decreased its expression. miR-296 is a novel molecular modulator for alkali burns in the mouse cornea.Entities:
Keywords: alkali; cornea; miR-296
Year: 2017 PMID: 29399058 PMCID: PMC5769237 DOI: 10.3892/etm.2017.5408
Source DB: PubMed Journal: Exp Ther Med ISSN: 1792-0981 Impact factor: 2.447
Primers list for mouse miR-296 gene qPCR analysis.
| Genes | Forward primers | Reverse primers |
|---|---|---|
| U6 | 5′-CTCGCTTCGGCAGCACATATACT-3′ | 5′-ACGCTTCACGAATTTGCGTGTC-3′ |
| miR-296 | 5′-ACACTCCAGCTGGGAGGGCCCCCCCTCAA-3′ | 5′-TGGTGTCGTGGAGTCG-3′ |
miR, microRNA; qPCR, quantitative polymerase chain reaction.
Figure 1.miR-296 mRNA expressed at different levels in different treatment on day 7 after corneal alkali burn. Histogram showing miR-296 mRNA expression level as determined by quantitative polymerase chain reaction. The y-axis shows miR-296 expression levels relative to the β-actin reference gene. Data shown are based on the linear conversion of ΔCq values for each sample (n=3, error bars denote standard error of the mean; *P<0.05, **P<0.01).
Figure 2.Probable pathway clustering analysis of miR-296 gene in comparison SY1 with KB2 according to KEGG pathway analysis.
Figure 3.Probable pathway clustering analysis of miR-296 gene in comparison SY2 with KB2 according to KEGG pathway analysis.
Figure 4.FGF23 protein expressed at different levels in different treatment on day 7 after corneal alkali burn. Representative western blots showing (A) FGF23 protein level in the mouse cornea. The corresponding β-actin protein level for the same blot is shown, and serves as a protein loading control. The y-axis shows (B) the relative FGF23 protein expression level relative to the β-actin loading control (n=6, error bars denote standard error of the mean; *P<0.05, **P<0.01).
Figure 5.Corneal neovascularization in different treatment on day 7 after corneal alkali burn. (A) Corneal neovascularization was treated with levofloxacin eye drops (KB2), (B) corneal neovascularization was treated with levofloxacin and FK506 eye drops (SY1), (C) corneal neovascularization was treated with levofloxacin and tobramycin dexamethasone eye drops (SY2).