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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Sevoflurane post-conditioning protects primary rat cortical neurons against oxygen-glucose deprivation/resuscitation via down-regulation in mitochondrial apoptosis axis of Bid, Bim, Puma-Bax and Bak mediated by Erk1/2
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Sevoflurane post-conditioning protects primary rat cortical neurons against oxygen-glucose deprivation/resuscitation via down-regulation in mitochondrial apoptosis axis of Bid, Bim, Puma-Bax and Bak mediated by Erk1/2

机译:七氟醚后处理可通过下调Erk1 / 2介导的Bid,Bim,Puma-Bax和Bak线粒体凋亡轴来保护原代大鼠皮层神经元免受氧葡萄糖剥夺/复苏

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摘要

Temporal post-conditioning helps provide neuroprotection against brain injury secondary to ischemia-reperfusion and is considered an effective intervention, but the exact mechanism of sevoflurane post-conditioning is unclear. The essential axis involves activator Bid, Bim, Puma (BH3s), Bax, and Bak; activates the mitochondrial death program; and might be involved in a cell death signal. Extracellular signal-related kinases 1/2 (Erk1/2) play a pivotal role in cell growth and proliferation. We hypothesized that sevoflurane post-conditioning might inhibit Bid, Bim, Puma, Box, and Bak expression and is activated by phosphor-Erk1/2 to decrease neuronal death. To test this hypothesis, we exposed primary cortical neuron cultures to oxygen-glucose deprivation for 1 h, along with resuscitation for 24 h (OGD/R). MIT assays, propidium iodide uptake (PI), JC-1 fluorescence, and Western blot indicated the following: decreased cell viability (P < 0.05); increased cell death (P < 0.05); decreased mitochondrial membrane potential (P < 0.05); and decreased Bid, Bim, Puma, Bax, and Bak expression with OGD/R exposure. Inhibition of Erk1/2 phosphorylation could attenuate sevoflurane post-conditioning that mediated an increase in neuronal viability and mitochondrial membrane potential, as well as a decrease in cell death and Bid, Bim, Puma, Bax, and Bak expression after OGD/R treatment. The results demonstrated that sevoflurane post-conditioning caused a marked decrease in cortical neuronal death secondary to OGD/R exposure through the downregulation of the mitochondrial apoptosis axis involving Bid, Bim, Puma, Box, and Bak that was mediated by the phosphorylation/activation of Erk1/2. (C) 2015 Elsevier B.V. All rights reserved.
机译:暂时性的后处理有助于提供针对缺血再灌注继发的脑损伤的神经保护作用,被认为是一种有效的干预措施,但是七氟醚后处理的确切机制尚不清楚。基本轴涉及激活剂Bid,Bim,Puma(BH3s),Bax和Bak;激活线粒体死亡程序;并可能参与细胞死亡信号。细胞外信号相关激酶1/2(Erk1 / 2)在细胞生长和增殖中起关键作用。我们假设七氟醚后处理可能会抑制Bid,Bim,Puma,Box和Bak的表达,并被磷Erk1 / 2激活以减少神经元死亡。为了检验该假设,我们将原皮层神经元培养物暴露于氧-葡萄糖剥夺状态1小时,并进行复苏24小时(OGD / R)。 MIT分析,碘化丙锭摄取(PI),JC-1荧光和Western印迹表明:细胞活力降低(P <0.05);细胞死亡增加(P <0.05);线粒体膜电位降低(P <0.05); OGD / R暴露会降低Bid,Bim,Puma,Bax和Bak的表达。抑制Erk1 / 2磷酸化可以减弱七氟醚后调理,后者介导神经元活力和线粒体膜电位的增加,以及OGD / R处理后细胞死亡和Bid,Bim,Puma,Bax和Bak表达的降低。结果表明,七氟醚后处理可通过下调线粒体凋亡轴(涉及Bid,Bim,Puma,Box和Bak),通过OGD / R暴露继发OGD / R引起的皮质神经元死亡显着减少,这是由磷酸化/激活介导的。 Erk1 / 2。 (C)2015 Elsevier B.V.保留所有权利。

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