Inhibition of miR-542-3p augments autophagy to promote diabetic corneal wound healing

IF 4.1 1区 医学 Q1 OPHTHALMOLOGY
Danling Liao, Shijia Wei, Jianzhang Hu
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Abstract

Autophagy has recently been shown to be critical for protecting peripheral nerve regeneration. This study explored the impact of miR-542-3p on diabetic corneal nerve regeneration and epithelial healing through the regulation of autophagy. A type 1 diabetes model was established in male mice through streptozotocin administration. Immunofluorescence staining of β-Tubulin III and sodium fluorescein staining were performed to observe corneal nerve fiber density and corneal epithelial healing, respectively. Western blotting, immunofluorescence and transmission electron microscopy were used to determine autophagy levels. Subconjunctival injection of RAPA and 3-MA altered autophagy levels; with them, we evaluated the role of autophagy in diabetic keratopathy. miRNA sequencing and bioinformatics analysis were performed to identify miRNA-mRNA networks with potential autophagy-regulating roles, and miR-542-3p was measured by quantitative real-time polymerase chain reaction (qRT-PCR). miR-542-3p antagomir was injected subconjunctivally to assess the role in diabetic corneal neuropathy. Our data suggest that autophagy is suppressed in the diabetic corneal nerve and that activation of autophagy promotes diabetic corneal wound healing. We identified a potential autophagy-regulating miRNA-mRNA network in the diabetic trigeminal ganglion, in which miR-542-3p expression was significantly upregulated. Inhibition of miR-542-3p significantly enhanced the level of autophagy in trigeminal ganglion by upregulating ATG4D expression, thereby accelerating diabetic corneal nerve regeneration and epithelial healing. Dysregulated autophagy is an important contributor to delayed diabetic corneal injury healing. Inhibiting miR-542-3p promotes diabetic corneal nerve regeneration and epithelial healing through autophagy activation by ATG4D.
抑制 miR-542-3p 可增强自噬作用,促进糖尿病角膜伤口愈合
自噬最近被证明是保护周围神经再生的关键。本研究探讨了 miR-542-3p 通过调节自噬对糖尿病角膜神经再生和上皮愈合的影响。研究人员通过给雄性小鼠注射链脲佐菌素建立了 1 型糖尿病模型。免疫荧光染色法和荧光素钠染色法分别观察角膜神经纤维密度和角膜上皮愈合情况。用 Western 印迹、免疫荧光和透射电子显微镜测定自噬水平。结膜下注射RAPA和3-MA可改变自噬水平;通过它们,我们评估了自噬在糖尿病角膜病变中的作用。我们进行了 miRNA 测序和生物信息学分析,以确定具有潜在自噬调节作用的 miRNA-mRNA 网络,并通过定量实时聚合酶链式反应(qRT-PCR)测定了 miR-542-3p。我们的数据表明,自噬在糖尿病角膜神经中受到抑制,而激活自噬可促进糖尿病角膜伤口愈合。我们在糖尿病三叉神经节中发现了一个潜在的自噬调节 miRNA-mRNA 网络,其中 miR-542-3p 的表达显著上调。抑制miR-542-3p可通过上调ATG4D的表达,显著提高三叉神经节的自噬水平,从而加速糖尿病角膜神经再生和上皮愈合。自噬失调是导致糖尿病角膜损伤延迟愈合的重要原因。抑制 miR-542-3p 可通过 ATG4D 激活自噬促进糖尿病角膜神经再生和上皮愈合。
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来源期刊
Eye and Vision
Eye and Vision OPHTHALMOLOGY-
CiteScore
8.60
自引率
2.40%
发文量
89
审稿时长
15 weeks
期刊介绍: Eye and Vision is an open access, peer-reviewed journal for ophthalmologists and visual science specialists. It welcomes research articles, reviews, methodologies, commentaries, case reports, perspectives and short reports encompassing all aspects of eye and vision. Topics of interest include but are not limited to: current developments of theoretical, experimental and clinical investigations in ophthalmology, optometry and vision science which focus on novel and high-impact findings on central issues pertaining to biology, pathophysiology and etiology of eye diseases as well as advances in diagnostic techniques, surgical treatment, instrument updates, the latest drug findings, results of clinical trials and research findings. It aims to provide ophthalmologists and visual science specialists with the latest developments in theoretical, experimental and clinical investigations in eye and vision.
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