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线粒体-apocynin通过改善线粒体损伤来保护机体免受海藻酸诱导的兴奋毒性作用。

Mito-Apocynin Protects Against Kainic Acid-Induced Excitotoxicity by Ameliorating Mitochondrial Impairment.

作者信息

Lin Miaomiao, Wu Huanchen, Wan Xiaorui, Liu Na, Jiang Yiyue, Sheng Yichao, Wang Jing, Xu Haidong, Xue Jie, Qin Zhenghong, Wang Yan

机构信息

Department of Pharmacology College of Pharmaceutical Sciences, Suzhou Key Laboratory of Aging and Nervous Diseases, and Jiangsu Key Laboratory of Neuropsychiatric Diseases, Soochow University, Suzhou, Jiangsu, China.

出版信息

Mol Neurobiol. 2025 Jun;62(6):7160-7173. doi: 10.1007/s12035-025-04827-3. Epub 2025 Mar 17.

Abstract

Neurodegenerative diseases represent significant global health challenges, with rising incidence rates. A substantial body of evidence indicates that excitotoxicity may be a critical target in the context of these diseases. However, effective pharmacological interventions aimed at mitigating excitotoxicity remain elusive. This study aimed to elucidate the neuroprotective effects and mechanisms of the mitochondrion-targeted NOX inhibitor, mito-apocynin, in the context of kainic acid (KA)-induced excitotoxicity. Our findings demonstrate that KA disrupts mitochondrial morphology, leading to impaired energy metabolism and mitochondrial dysfunction. Western blotting experiments revealed that KA compromises mitochondrial quality control. Additionally, Nissl staining and CCK8 assays indicated that mito-apocynin (administered at 75 μg/kg in vivo and 1 μM in vitro) significantly reduced neuronal death resulting from KA-induced excitotoxic damage in both in vivo and in vitro models. Furthermore, mito-apocynin improved neurobehavioral deficits induced by KA and mitigated mitochondrial dysfunction observed in vitro. Notably, mito-apocynin significantly reversed the KA-induced increase in NOX4 levels within the striatal mitochondria, reduced the ratio of phosphorylated DRP1 (Ser616) to total DRP1, and enhanced the expression of PGC-1α, PINK1, and Parkin proteins throughout the total striatum. In summary, mito-apocynin alleviates oxidative stress, preserves normal mitochondrial function and energy metabolism, and promotes mitochondrial quality control by modulating NOX expression in mitochondria, thereby reducing KA-induced excitotoxic damage.

摘要

神经退行性疾病是全球重大的健康挑战,发病率不断上升。大量证据表明,兴奋性毒性可能是这些疾病中的一个关键靶点。然而,旨在减轻兴奋性毒性的有效药物干预措施仍然难以捉摸。本研究旨在阐明线粒体靶向的NOX抑制剂米托-apocynin在海藻酸(KA)诱导的兴奋性毒性中的神经保护作用和机制。我们的研究结果表明,KA破坏线粒体形态,导致能量代谢受损和线粒体功能障碍。蛋白质印迹实验表明,KA损害线粒体质量控制。此外,尼氏染色和CCK8检测表明,米托-apocynin(体内给药剂量为75μg/kg,体外给药剂量为1μM)在体内和体外模型中均显著减少了KA诱导的兴奋性毒性损伤导致的神经元死亡。此外,米托-apocynin改善了KA诱导的神经行为缺陷,并减轻了体外观察到的线粒体功能障碍。值得注意的是,米托-apocynin显著逆转了KA诱导的纹状体线粒体中NOX4水平的升高,降低了磷酸化DRP1(Ser616)与总DRP1的比例,并增强了整个纹状体中PGC-1α、PINK1和Parkin蛋白的表达。总之,米托-apocynin通过调节线粒体中NOX的表达减轻氧化应激,维持正常的线粒体功能和能量代谢,并促进线粒体质量控制,从而减少KA诱导的兴奋性毒性损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c66e/12078395/c3805108667e/12035_2025_4827_Fig1_HTML.jpg

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