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PI3K/AKT/MAOA在糖皮质激素诱导的小梁网氧化应激及相关早衰中的作用

Role of PI3K/AKT/MAOA in glucocorticoid-induced oxidative stress and associated premature senescence of the trabecular meshwork.

作者信息

Zhang Pengyu, Zhang Nan, Hu Yixin, Deng Xizhi, Zhu Min, Lai Cheng, Zeng Wen, Ke Min

机构信息

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

出版信息

Aging Cell. 2025 Apr;24(4):e14452. doi: 10.1111/acel.14452. Epub 2024 Dec 17.

Abstract

The oxidative stress-induced premature senescence of trabecular meshwork (TM) represents a pivotal risk factor for the development of glucocorticoid-induced glaucoma (GIG). This study aimed to elucidate the pathogenesis of TM senescence in GIG. MethodsIntraocular pressure (IOP), transmission electron microscopy and senescence-associated protein expression in TM were evaluated in GIG mice. Protein expression of phosphoinositide-3-kinase regulatory subunit 1 (PIK3R1) and monoamine oxidase A (MAOA), phosphorylation of AKT were quantified. ROS and mitochondrial superoxide levels were measured to evaluate cellular oxidative stress. Cell cycle analysis, β-galactosidase staining, senescence-associated protein expression were employed to assess the aging status of primary human trabecular meshwork cells (pHTMs). ResultsmRNA-seq and KEGG analysis indicating PI3K/AKT pathway as a key regulator in TM of GIG. PI3K inhibitor significantly prevented IOP elevation and abnormal mitochondrial morphology of TM in the GIG mouse model. PI3K inhibitor or selective silencing of PIK3R1 alleviated dexamethasone (DEX)-induced oxidative stress, also mitochondrial dysfunction, inhibiting MAOA expression in pHTMs. The same phenomenon was observed in the GIG models with inhibition of MAOA. Further KEGG analysis indicates that cellular senescence is the key factor in the pathogenesis of GIG. TM senescence was observed in both GIG mouse and cell models. Inhibition of the PI3K/AKT/MAOA pathway significantly alleviated DEX-induced premature cellular senescence of TM in GIG models. Glucocorticoids activated the PI3K/AKT/MAOA pathway, leading to mitochondrial dysfunction, oxidative stress, and premature aging in TM, elevating IOP. This mechanism could be associated with the onset and progression of GIG, providing a potential approach for its treatment.

摘要

小梁网(TM)的氧化应激诱导的早衰是糖皮质激素性青光眼(GIG)发生发展的一个关键危险因素。本研究旨在阐明GIG中小梁网衰老的发病机制。方法评估GIG小鼠的眼压(IOP)、透射电子显微镜以及小梁网中衰老相关蛋白的表达。对磷酸肌醇-3-激酶调节亚基1(PIK3R1)和单胺氧化酶A(MAOA)的蛋白表达、AKT的磷酸化进行定量分析。测量活性氧(ROS)和线粒体超氧化物水平以评估细胞氧化应激。采用细胞周期分析、β-半乳糖苷酶染色、衰老相关蛋白表达来评估原代人小梁网细胞(pHTMs)的衰老状态。结果mRNA测序和KEGG分析表明PI3K/AKT通路是GIG小梁网中的关键调节因子。PI3K抑制剂显著预防了GIG小鼠模型中小梁网的眼压升高和线粒体形态异常。PI3K抑制剂或PIK3R1的选择性沉默减轻了地塞米松(DEX)诱导的氧化应激,以及线粒体功能障碍,抑制了pHTMs中MAOA的表达。在抑制MAOA的GIG模型中也观察到了同样的现象。进一步的KEGG分析表明细胞衰老在GIG发病机制中是关键因素。在GIG小鼠和细胞模型中均观察到了小梁网衰老。抑制PI3K/AKT/MAOA通路显著减轻了GIG模型中DEX诱导的小梁网细胞早衰。糖皮质激素激活PI3K/AKT/MAOA通路,导致小梁网线粒体功能障碍、氧化应激和早衰,从而使眼压升高。这一机制可能与GIG的发生和发展有关,为其治疗提供了一种潜在的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e8d/11984687/e9f969835393/ACEL-24-e14452-g002.jpg

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