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Neuronal preconditioning with the antianginal drug, bepridil.

机译:用抗心绞痛药物bepridil进行神经元预处理。

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It has recently been shown that the antianginal drug bepridil (BEP) activates mitochondrial ATP-sensitive potassium (mitoK(ATP)) channels and thus confers cardioprotection. Our aim was to investigate whether BEP could induce preconditioning in cultured rat cortical neurons. Although BEP depolarized isolated and in situ mitochondria and increased reactive oxygen species generation, no acute protection was observed. However, a 3-day BEP-treatment elicited dose-dependent delayed neuroprotection against 180 min of oxygen-glucose deprivation (cell viability: untreated, 52.5 +/- 0.85%; BEP 1 mumol/L, 59.6 +/- 1.53%*; BEP 2.5 mumol/L, 71.9 +/- 1.23%*; BEP 5 mumol/L, 95.3 +/- 0.89%*; mean +/- SEM; *p < 0.05 vs. untreated) and 60 min of glutamate excitotoxicity (200 mumol/L; cell viability: untreated, 54.1 +/- 0.69%; BEP 1 mumol/L, 61.2 +/- 1.19%*; BEP 2.5 mumol/L, 78.1 +/- 1.67%*; BEP 5 mumol/L, 91.2 +/- 1.20%*; mean +/- SEM; *p < 0.05 vs. untreated), and inhibited the reactive oxygen species surge upon glutamate exposure. The protection was antagonized with co-application of the superoxide dismutase mimetic M40401, but not with reduced glutathione, catalase, or with the mitoK(ATP) blocker 5-hydroxydecanoate. Furthermore, BEP treatment resulted in increased levels of phosphorylated protein kinase C, manganese-dependent superoxide dismutase, glutathione peroxidase, and Bcl-2. Our results indicate that BEP induces delayed neuronal preconditioning which is dependent on superoxide generation but perhaps not on direct mitoK(ATP) activation.
机译:最近显示,抗心绞痛药物贝普利(BEP)激活线粒体ATP敏感性钾(mitoK(ATP))通道,从而赋予心脏保护作用。我们的目的是研究BEP是否可以在培养的大鼠皮质神经元中诱导预处理。尽管BEP使分离的原位线粒体去极化并增加了活性氧的生成,但未观察到急性保护作用。然而,为期3天的BEP治疗可引起剂量依赖性的延迟性神经保护,以抵抗180分钟的氧-葡萄糖剥夺(细胞活力:未处理,为52.5 +/- 0.85%; BEP为1摩尔/升,59.6 +/- 1.53%*; BEP 2.5摩尔/升,71.9 +/- 1.23%*; BEP 5摩尔/升,95.3 +/- 0.89%*;平均值+/- SEM; * p <0.05 vs.未经处理)和60分钟的谷氨酸兴奋性毒性(200 mumol / L;细胞活力:未处理,54.1 +/- 0.69%; BEP 1 mumol / L,61.2 +/- 1.19%*; BEP 2.5 mumol / L,78.1 +/- 1.67%*; BEP 5 mumol / L, 91.2 +/- 1.20%*;平均值+/- SEM; * p <0.05,相对于未处理),并抑制了谷氨酸暴露时活性氧的激增。与超氧化物歧化酶模拟物M40401共同施用可拮抗保护作用,但不能与还原型谷胱甘肽,过氧化氢酶或mitoK(ATP)阻滞剂5-羟基癸酸酯反应。此外,BEP处理导致磷酸化蛋白激酶C,锰依赖性超氧化物歧化酶,谷胱甘肽过氧化物酶和Bcl-2的水平升高。我们的结果表明BEP诱导延迟的神经元预处理,这取决于超氧化物的产生,但可能不取决于直接的mitoK(ATP)激活。

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