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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Bcl-2 overexpression protects against neuron loss within the ischemic margin following experimental stroke and inhibits cytochrome c translocation and caspase-3 activity.
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Bcl-2 overexpression protects against neuron loss within the ischemic margin following experimental stroke and inhibits cytochrome c translocation and caspase-3 activity.

机译:Bcl-2过表达可防止实验性卒中后缺血边缘的神经元丢失,并抑制细胞色素c易位和caspase-3活性。

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摘要

Bcl-2 protects against both apoptotic and necrotic death induced by several cerebral insults. We and others have previously demonstrated that defective herpes simplex virus vectors expressing Bcl-2 protect against various insults in vitro and in vivo, including cerebral ischemia. Because the infarct margin may be a region that is most amenable to treatment, we first determined whether gene transfer to the infarct margin is possible using a focal ischemia model. Since ischemic injury with and without reperfusion may occur by different mechanisms, we also determined whether Bcl-2 protects against focal cerebral ischemic injury either with or without reperfusion in rats. Bax expression, cytochrome c translocation and activated caspase-3 expression were also assessed. Viral vectors overexpressing Bcl-2 were delivered to the infarct margin. Reperfusion resulted in larger infarcts than permanent occlusion. Bcl-2 overexpression significantly improved neuron survival in both ischemia models. Bcl-2 overexpression did not alter overall Bax expression, but inhibited cytosolic accumulation of cytochrome c and caspase-3 activation. Thus, we provide the first evidence that gene transfer to the infarct margin is feasible, that overexpression of Bcl-2 protects against damage to the infarct margin induced by ischemia with and without reperfusion, and that Bcl-2 overexpression using gene therapy attenuates apoptosis-related proteins. This suggests a potential therapeutic strategy for stroke.
机译:Bcl-2可以防止因数次脑损伤引起的凋亡和坏死性死亡。我们和其他人先前已经证明,表达Bcl-2的缺陷性单纯疱疹病毒载体在体外和体内可抵抗各种损伤,包括脑缺血。因为梗塞边缘可能是最适合治疗的区域,所以我们首先使用局灶性缺血模型确定是否可以将基因转移到梗塞边缘。由于有和没有再灌注的缺血性损伤可能是通过不同的机制发生的,因此我们还确定了Bcl-2是否可以防止大鼠有或没有再灌注的局灶性脑缺血损伤。还评估了Bax表达,细胞色素c易位和激活的caspase-3表达。将过表达Bcl-2的病毒载体递送至梗塞边缘。与永久性闭塞相比,再灌注导致更大的梗塞。 Bcl-2过表达在两个缺血模型中均显着改善了神经元存活。 Bcl-2的过表达并没有改变整体Bax表达,但抑制了细胞色素c和caspase-3激活的胞质积累。因此,我们提供了第一个证据,证明基因转移到梗塞边缘是可行的,Bcl-2的过表达可以防止缺血再灌注和不灌注引起的梗塞边缘的损害,以及使用基因疗法的Bcl-2的过表达可以减轻细胞凋亡-相关蛋白质。这表明中风的潜在治疗策略。

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