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抑制CDK1/Drp1介导的线粒体分裂可减轻地塞米松诱导的小梁网细胞外基质沉积。

Suppression of CDK1/Drp1-Mediated Mitochondrial Fission Attenuates Dexamethasone-Induced Extracellular Matrix Deposition in the Trabecular Meshwork.

作者信息

Deng Xizhi, Zhu Min, Liu Yang, Zhang Nan, Zhang Pengyu, Zeng Wen, Ke Min

机构信息

Department of Ophthalmology, Zhongnan Hospital of Wuhan University, Wuhan, Hubei, China.

出版信息

Antioxid Redox Signal. 2025 Feb;42(4-6):249-264. doi: 10.1089/ars.2023.0502. Epub 2024 Nov 6.

Abstract

Deposition of extracellular matrix (ECM) in the trabecular meshwork (TM), as induced by dexamethasone (Dex), is believed to play an important role in the onset of glucocorticoid-induced glaucoma (GIG). Abnormal ECM deposition is a consequence of mitochondrial dysfunction. We aimed to clarify how mitochondrial dysfunction leads to ECM deposition within the TM and to support the development of novel therapeutic strategies. In primary human TM cells (pHTMCs) and a Dex acetate-induced murine model of GIG, glucocorticoid administration stimulated both mitochondrial fission and ECM deposition. Excessive mitochondrial fission leads to dysfunction and the overexpression of ECM proteins in pHTMCs. Notably, when pHTMCs were treated with the dynamin-related protein 1 (Drp1) inhibitor Mdivi-1 or with Drp1 siRNA, we observed a marked reduction in Dex-induced mitochondrial damage and ECM proteins . Furthermore, in C57BL/6J mice, treatment with Mdivi-1 mitigated mitochondrial damage and blocked ECM deposition within the TM. We then used Ro3306 to inhibit the cyclin-dependent kinase (CDK)1-mediated phosphorylation of Drp1 at Ser 616, which restored mitochondrial function and diminished Dex-induced ECM protein expression in pHTMCs. This study illuminates the pathogenic mechanism linking mitochondrial dysfunction to ECM deposition in GIG. Our innovative approach revealed that Dex stimulates mitochondrial fission CDK1-mediated p-Drp1 overexpression, which drives ECM accumulation. It offered a novel therapeutic strategy for reducing ECM protein expression by inhibiting excessive mitochondrial fission and restoring mitochondrial function. By targeting the CDK1/Drp1-driven mitochondrial fission process, we can counteract Dex-induced ECM deposition in the TM both and . 42, 249-264.

摘要

地塞米松(Dex)诱导的细胞外基质(ECM)在小梁网(TM)中的沉积被认为在糖皮质激素性青光眼(GIG)的发病中起重要作用。异常的ECM沉积是线粒体功能障碍的结果。我们旨在阐明线粒体功能障碍如何导致TM内的ECM沉积,并支持新型治疗策略的开发。在原代人TM细胞(pHTMCs)和醋酸地塞米松诱导的GIG小鼠模型中,给予糖皮质激素可刺激线粒体分裂和ECM沉积。过度的线粒体分裂导致pHTMCs功能障碍和ECM蛋白的过度表达。值得注意的是,当用动力相关蛋白1(Drp1)抑制剂Mdivi-1或Drp1 siRNA处理pHTMCs时,我们观察到地塞米松诱导的线粒体损伤和ECM蛋白明显减少。此外,在C57BL/6J小鼠中,用Mdivi-1处理可减轻线粒体损伤并阻止TM内的ECM沉积。然后我们使用Ro3306抑制细胞周期蛋白依赖性激酶(CDK)1介导的Drp1在Ser 616处的磷酸化,这恢复了线粒体功能并减少了地塞米松诱导的pHTMCs中ECM蛋白的表达。这项研究阐明了将线粒体功能障碍与GIG中的ECM沉积联系起来的致病机制。我们的创新方法表明,地塞米松刺激线粒体分裂和CDK1介导的p-Drp1过表达,从而驱动ECM积累。它提供了一种通过抑制过度的线粒体分裂和恢复线粒体功能来减少ECM蛋白表达的新型治疗策略。通过靶向CDK1/Drp1驱动的线粒体分裂过程,我们可以在体内和体外对抗地塞米松诱导的TM中的ECM沉积。42, 249 - 264。

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