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Gene inactivation of Na+/H+ exchanger isoform 1 attenuates apoptosis and mitochondrial damage following transient focal cerebral ischemia

机译:Na + / H +交换异构体1的基因失活可减轻短暂性局灶性脑缺血后的凋亡和线粒体损伤

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摘要

We investigated mechanisms underlying the Na+/H+ exchanger isoform 1 (NHE1)-mediated neuronal damage in transient focal ischemia. Physiological parameters, body and tympanic temperatures, and regional cerebral blood flow during 30 min middle cerebral artery occlusion (MCAO) were similar in wild-type NHE1 (NHE1+/+) and NHE1 heterozygous (NHE1+/−) mice. NHE1+/+ mice developed infarct volume of 57.3 ± 8.8 mm3 at 24 h reperfusion (Rp), which progressed to 86.1 ± 10.0 mm3 at 72 h Rp. This delayed cell death was preceded by release of mitochondrial cytochrome c (Cyt. C), nuclear translocation of apoptosis-inducing factor (AIF), activation of caspase-3, and TUNEL-positive staining and chromatin condensation in the ipsilateral hemispheres of NHE1+/+ brains. In contrast, NHE1+/− mice had a significantly smaller infarct volume and improved neurological function. A similar neuroprotection was obtained with NHE1 inhibitor HOE 642. The number of apoptotic cells, release of AIF and Cyt. C or levels of active caspase-3 was significantly reduced in NHE1+/− brains. These data imply that NHE1 activity may contribute to ischemic apoptosis. Ischemic brains did not exhibit changes of NHE1 protein expression. In contrast, up-regulation of NHE1 expression was found in NHE1+/+ neurons after in vitro ischemia. These data suggest that NHE1 activation following cerebral ischemia contributes to mitochondrial damage and ischemic apoptosis.
机译:我们调查了Na + / H + 交换异构体1(NHE1)介导的神经元在短暂性局灶性局部缺血中潜在的机制。野生型NHE1(NHE1 + / + )和NHE1杂合子(NHE1 )在30分钟的大脑中动脉闭塞(MCAO)期间的生理参数,体温和鼓膜温度以及局部脑血流量相似> +/- )小鼠。 NHE1 + / + 小鼠在24 h再灌注(Rp)时梗死体积为57.3±8.8 mm 3 ,发展为86.1±10.0 mm 3 在72小时Rp。这种延迟的细胞死亡是在NHE1同侧半球中释放线粒体细胞色素c(Cyt.C),细胞凋亡诱导因子(AIF)核易位,激活caspase-3以及TUNEL阳性染色和染色质浓缩。 sup> + / + 大脑。相比之下,NHE1 +/- 小鼠的梗塞体积明显减小,神经功能得到改善。用NHE1抑制剂HOE 642获得了类似的神经保护作用。凋亡细胞的数量,AIF和Cyt的释放。 NHE1 +/- 脑中C或活性caspase-3的水平显着降低。这些数据暗示NHE1活性可能有助于缺血性细胞凋亡。缺血性脑未显示NHE1蛋白表达的变化。相反,在体外缺血后,在NHE1 + / + 神经元中发现了NHE1表达的上调。这些数据表明脑缺血后NHE1的激活有助于线粒体损伤和缺血性细胞凋亡。

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