Proliferator-Activated Receptor Alpha Inhibits Abnormal Extracellular Matrix Accumulation and Maintains Energy Metabolism in Late-Onset Fuchs Endothelial Corneal Dystrophy.

IF 5 2区 医学 Q1 OPHTHALMOLOGY
Xiaoqi Li, Anqi Liu, Yannan Zhou, Haolan Qi, Junyi Wang, Mingxiong Chen, Tunan Sun, Jie Wu, Yifei Huang, Liqiang Wang
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引用次数: 0

Abstract

Purpose: Fuchs endothelial corneal dystrophy (FECD) is the most common corneal endothelial dystrophy and guttae are crucial in causing progressive loss of corneal endothelium. This study aimed to find a way to inhibit the formation of guttae in FECD.

Methods and results: Mitochondria fatty acid β-oxidation (FAO) and tricarboxylic acid (TCA) cycle processes were negatively enriched in the FECD group according to gene set enrichment analysis in GSE171830. In vivo UV-A-induced late-onset FECD mouse model were established. After irradiation, aged proliferator-activated receptor alpha (PPARα-/-) mice manifested greater corneal opacity, cornea edema, and varied corneal endothelial cell morphology compared with wild-type mice. The total metabolites in cornea of aged PPARα-/- mice and wild-type mice were detected by mass spectrometry. Metabolites of the FAO pathway were decreased in corneas of PPARα-/- mice, coincident with enzymes of FAO decreased in GSE171830. The score for FAO energy metabolism was negatively related to that of the TGF-β pathway according to gene set variation analysis. The express of alpha smooth muscle actin (αSMA) and Col1a were increased in aged PPARα-/- mice and small interfering PPARα B4G12 cell lines. After irradiation, activation or overexpression of PPARα demonstrated reduced corneal endothelial damage and reversal of Descemet membrane thickening, along with downregulation of fibrosis-related genes such as αSMA and collagen type I alpha 1 (Col1a). In vitro experiments revealed that fenofibrate could reverse fibrosis and damage of cell-to-cell connections induced by TGF-β. Additionally, fenofibrate was found to alleviate mitochondrial damage in B4G12 and increase oxygen consumption rates after TGF-β treatment.

Conclusions: Overall, we suggested that the overexpression or activation of PPARα can inhibit FAO energy dysfunction of corneal endothelium and the abnormal extracellular matrix formation in Descemet's membrane, which is the primary pathology of FECD. Thus, PPARα may be a potential target for attenuating the progression of FECD.

增殖激活受体α抑制迟发性Fuchs内皮性角膜营养不良的异常细胞外基质积累并维持能量代谢。
目的:Fuchs内皮性角膜营养不良(FECD)是最常见的角膜内皮营养不良,而guttes是导致角膜内皮进行性丧失的关键因素。本研究旨在寻找一种抑制FECD中guttae形成的方法。方法与结果:根据GSE171830基因集富集分析,FECD组线粒体脂肪酸β-氧化(FAO)和三羧酸(TCA)循环过程负富集。建立了体内uv - a诱导的迟发性FECD小鼠模型。与野生型小鼠相比,辐照后老龄增殖因子激活受体α (PPARα-/-)小鼠角膜混浊、角膜水肿、角膜内皮细胞形态变化明显。采用质谱法检测老龄PPARα-/-小鼠和野生型小鼠角膜总代谢物。PPARα-/-小鼠角膜中FAO通路的代谢物减少,与GSE171830中FAO通路的酶减少一致。根据基因集变异分析,FAO能量代谢得分与TGF-β通路得分呈负相关。α-平滑肌肌动蛋白(αSMA)和Col1a在衰老PPARα-/-小鼠和小干扰PPARα B4G12细胞系中表达升高。照射后,活化或过表达PPARα显示角膜内皮损伤减轻,内皮膜增厚逆转,纤维化相关基因如αSMA和I型胶原α 1 (Col1a)下调。体外实验显示,非诺贝特可以逆转TGF-β诱导的纤维化和细胞间连接损伤。此外,非诺贝特可减轻TGF-β处理后B4G12线粒体损伤,并增加耗氧量。结论:综上所述,PPARα的过表达或活化可抑制角膜内皮组织的能量功能障碍和Descemet膜细胞外基质的异常形成,这是FECD的主要病理机制。因此,PPARα可能是减缓FECD进展的潜在靶点。
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
6.90
自引率
4.50%
发文量
339
审稿时长
1 months
期刊介绍: Investigative Ophthalmology & Visual Science (IOVS), published as ready online, is a peer-reviewed academic journal of the Association for Research in Vision and Ophthalmology (ARVO). IOVS features original research, mostly pertaining to clinical and laboratory ophthalmology and vision research in general.
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