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首页> 外文期刊>CNS neuroscience & therapeutics >Cyclosporine A Treatment Abrogates Ischemia-Induced Neuronal Cell Death by Preserving Mitochondrial Integrity through Upregulation of the Parkinson's Disease-Associated Protein DJ-1
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Cyclosporine A Treatment Abrogates Ischemia-Induced Neuronal Cell Death by Preserving Mitochondrial Integrity through Upregulation of the Parkinson's Disease-Associated Protein DJ-1

机译:Cyclosporine A疗法通过上调帕金森氏病相关蛋白DJ-1来保持线粒体完整性,从而减轻局部缺血诱导的神经元细胞死亡

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摘要

Aims: Hypoxic-ischemia alters mitochondrial membrane potential (Delta psi m), respiratory-related enzymes, and mitochondrial DNA (mtDNA). Drugs acting on mitochondria, such as cyclosporine A (CsA), may reveal novel mitochondria-based cell death signaling targets for stroke. Our previous studies showed that Parkinson's disease-associated protein DJ-1 participates in the acute endogenous neuroprotection after stroke via mitochondrial pathway. DJ-1 was detected immediately after stroke and efficiently translocated into the mitochondria offering a new venue for developing treatment strategies against stroke. Here, we examined a molecular interaction between CsA and mitochondrial integrity in the in vitro acute stroke model of oxygen glucose deprivation/reperfusion (OGD/R) injury with emphasis on DJ-1. Methods: Primary rat neuronal cells (PRNCs) were exposed to OGD/R injury and processed for immunocytochemistry, ELISA, and mitochondria-based molecular assays to reveal the role of DJ-1 in CsA modulation of mitochondrial integrity. Results: Administration of CsA before stroke onset (24 h pre-OGD/R) afforded significantly much more robust neuroprotective effects than when CsA was initiated after stroke (2 h post-OGD/R), revealing that CsA exerted neuroprotection in the early phase of ischemic stroke. CsA prevented the mitochondria-dependent cell death signaling pathway involved in cytochrome c (Cyt c)-induced intrinsic apoptotic process. CsA preserved cellular ATP content, but not hexokinase activity under hypoxic conditions. CsA prevented both mtDNA decrement and Delta psi m degradation after reperfusion, and enhanced secretion of DJ-1 in the mitochondria, coupled with reduced oxidative stress. Conclusion: These observations provided evidence that CsA maintained mitochondrial integrity likely via DJ-1 upregulation, supporting the concept that mitochondria-based treatments targeting the early phase of disease progression may prove beneficial in stroke.
机译:目的:缺氧缺血会改变线粒体膜电位(Delta psi m),呼吸相关酶和线粒体DNA(mtDNA)。作用于线粒体的药物,例如环孢素A(CsA),可能会揭示基于中风的新型线粒体细胞死亡信号转导靶标。我们以前的研究表明,帕金森病相关蛋白DJ-1通过线粒体途径参与中风后的急性内源性神经保护作用。中风后立即检测到DJ-1,并有效地将其转移到线粒体中,为开发针对中风的治疗策略提供了新的场所。在这里,我们研究了体外氧中毒/葡萄糖再灌注(OGD / R)损伤的急性中风模型中CsA与线粒体完整性之间的分子相互作用,重点是DJ-1。方法:将原代大鼠神经元细胞(PRNC)暴露于OGD / R损伤并进行免疫细胞化学,ELISA和基于线粒体的分子分析,以揭示DJ-1在CsA调节线粒体完整性中的作用。结果:中风发作前(OGD / R前24小时)给予CsA的神经保护作用比中风后(OGD / R后2小时)开始CsA时具有明显更强的神经保护作用,表明CsA在早期发挥了神经保护作用。缺血性中风。 CsA阻止了参与细胞色素c(Cyt c)诱导的内在凋亡过程的线粒体依赖性细胞死亡信号通路。在缺氧条件下,CsA保留了细胞ATP含量,但不保留己糖激酶活性。 CsA防止了再灌注后mtDNA的下降和Delta psi m的降解,并增强了线粒体DJ-1的分泌,同时降低了氧化应激。结论:这些观察结果提供了证据,表明CsA可能通过DJ-1上调维持了线粒体完整性,支持了针对线粒体疾病的早期治疗方案可能证明对中风有益的观点。

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