Effect of Chemical Injury on Autophagy in Canine Corneal Stromal Fibroblasts.

IF 1.9 4区 医学 Q2 OPHTHALMOLOGY
Brayden L Routh, Ratnakar Tripathi, Elizabeth A Giuliano, Brenden R Lankau, Prashant R Sinha, Rajiv R Mohan
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Abstract

Purpose: Ocular trauma leads to loss of corneal clarity resulting in vision deficits. Autophagy plays a critical role in the extracellular matrix, tissue repair, and homeostasis but its precise mechanistic role in regulating corneal function remains unknown. The present study investigated the modulation of autophagy-related genes (LC3, Beclin1, Sqstm1/p62, and Lamp1) in healthy and injured canine corneal stromal fibroblasts (CSFs). Methods: Primary CSFs were generated from healthy donor canine corneas and grown in minimum essential medium. Following incubation, cultures were exposed to nitrogen mustard (NM) and subjected to an autophagy activator, rapamycin (R), or vehicle treatment. Phase-contrast microscopy, quantitative reverse transcription polymerase chain reaction (qRT-PCR), and immunofluorescence staining were used to study the role of autophagy genes in canine corneal wound healing in vitro. Results: Phase-contrast microscopy showed that NM exposure led to morphological changes with stress fibers in CSFs, which was noticeably decreased by rapamycin treatment. Treatment of CSFs with rapamycin alone showed fibroblast hypertrophy while vehicle-treated population of CSFs exhibited typical spindle morphology. The qRT-PCR showed increased expression of LC3, Beclin1, and Lamp1 mRNA when treated with NM, NM+R, and R in comparison to vehicle-treated CSFs. Sqstm1/p62 expression was upregulated in the NM and NM+R treatment groups but was reduced in the R-treated group. Immunofluorescence showed similar results of the protein levels. Conclusions: This study suggests that autophagy is an essential component in corneal healing post-injury. Further, results suggest that targeting autophagy may offer an attractive treatment option to reestablish corneal clarity following ocular insult.

化学损伤对犬角膜间质成纤维细胞自噬的影响。
目的:眼外伤导致角膜清晰度下降,导致视力下降。自噬在细胞外基质、组织修复和体内平衡中起着至关重要的作用,但其在调节角膜功能中的确切机制尚不清楚。本研究研究了自噬相关基因(LC3, Beclin1, Sqstm1/p62和Lamp1)在健康和受伤的犬角膜基质成纤维细胞(csf)中的调节。方法:以健康犬角膜为供体,培养原代角膜干细胞。孵育后,将培养物暴露于氮芥(NM)中,并进行自噬激活剂、雷帕霉素(R)或载体处理。采用相对比显微镜、定量逆转录聚合酶链反应(qRT-PCR)和免疫荧光染色等方法研究自噬基因在犬角膜创面体外愈合中的作用。结果:相衬显微镜显示,NM暴露导致csf中应力纤维的形态改变,雷帕霉素处理明显减少。单独用雷帕霉素处理的csf呈现成纤维细胞肥大,而载体处理的csf呈现典型的纺锤体形态。qRT-PCR结果显示,与载体处理的csf相比,NM、NM+R和R处理的csf中LC3、Beclin1和Lamp1 mRNA的表达增加。在NM和NM+R处理组中,Sqstm1/p62表达上调,而在R处理组中表达降低。免疫荧光显示蛋白质水平相似的结果。结论:本研究提示自噬是角膜损伤后愈合的重要组成部分。此外,研究结果表明,靶向自噬可能是一种有吸引力的治疗选择,可以在眼部损伤后重建角膜清晰度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.60
自引率
4.30%
发文量
72
审稿时长
1 months
期刊介绍: Journal of Ocular Pharmacology and Therapeutics is the only peer-reviewed journal that combines the fields of ophthalmology and pharmacology to enable optimal treatment and prevention of ocular diseases and disorders. The Journal delivers the latest discoveries in the pharmacokinetics and pharmacodynamics of therapeutics for the treatment of ophthalmic disorders. Journal of Ocular Pharmacology and Therapeutics coverage includes: Glaucoma Cataracts Retinal degeneration Ocular infection, trauma, and toxicology Ocular drug delivery and biotransformation Ocular pharmacotherapy/clinical trials Ocular inflammatory and immune disorders Gene and cell-based therapies Ocular metabolic disorders Ocular ischemia and blood flow Proliferative disorders of the eye Eyes on Drug Discovery - written by Gary D. Novack, PhD, featuring the latest updates on drug and device pipeline developments as well as policy/regulatory changes by the FDA.
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