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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >NRG-1β exerts neuroprotective effects against ischemia reperfusion-induced injury in rats through the JNK signaling pathway
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NRG-1β exerts neuroprotective effects against ischemia reperfusion-induced injury in rats through the JNK signaling pathway

机译:NRG-1β通过JNK信号通路施加针对缺血再灌注诱导的大鼠损伤的神经保护作用

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摘要

Highlights ? NRG-1β improved neurological severity score and brain infarct volume in MCAO/R rats. ? NRG-1β protected the morphology and structure of nerve cells in MCAO/R rats. ? NRG-1β exhibited a neuroprotective effect via the JNK signaling pathway. ? NRG-1β has great potential asa therapeutic strategy for neuroprotection of stroke. Abstract Background Neuregulin-1β (NRG-1β) has great potential to be developed into therapeutics for neuroprotection. The aim of the current study was to analyze the effects and possible signaling pathway of NRG-1β on brain tissues in a rat model of middle cerebral artery occlusion/reperfusion (MCAO/R). Methods In order to observe the protective effect of NRG-1β on MCAO/R, the neurological deficit and infarct volume were measured using a modified neurological severity score (mNSS) test and by triphenyl tetrazolium chloride (TTC) staining. In order to detect the antagonistic effect of NRG-1β on nerve cells and the blood–brain barrier (BBB), the morphology and structure of cortical brain tissues were observed by Evans Blue (EB) staining, hematoxylin–eosin (H&E) and Nissl staining, in situ cell death detection kit, and transmission electron microscopy (TEM). In order to investigate whether NRG-1β exhibited a significant neuroprotective effect via the JNK signaling pathway, the activity of JNK and the levels of phospho-MKK4, phospho-JNK, pan-JNK and phospho-c-Jun were tested using a JNK activity screening kit, immunofluorescent labeling, and western blot analysis, respectively. Results In the NRG-1β treatment group, accompanied with a decrease in JNK activity, the protein levels of phospho-JNK, phospho-MKK4 and phospho-c-Jun decreased, the ischemia-induced apoptosis decreased, the abnormal morphological structures of nerve cells were ameliorated, the integrity of the BBB was restored, and infarct volume was reduced. At the same time, neurological function was significantly recovered. Conclusion NRG-1β exerts a neuroprotective effect through the JNK signaling pathway in MCAO/R rats. ]]>
机译:强调 ? NRG-1β改善神经学严重性评分和脑梗塞体积在MCAO / R大鼠。还是NRG-1β保护的形态和神经细胞的结构在MCAO / R大鼠。还是NRG-1β表现出经由JNK信号传递途径的神经保护作用。还是NRG-1β对中风的神经保护潜力巨大ASA的治疗策略。摘要背景神经调节蛋白1β(NRG-1β)已被开发成治疗神经保护的巨大潜力。目前研究的目的是分析在大脑中动脉闭塞/再灌注(MCAO / R)的大鼠模型NRG-1β对脑组织的影响,并可能的信号传导途径。方法为了观察在MCAO / R NRG-1β的保护作用,神经功能缺损和梗死体积使用改进的神经学严重性评分(MNSS)试验和通过三苯基氯化四唑(TTC)染色进行测定。为了检测NRG-1β对神经细胞的拮抗作用和血 - 脑屏障(BBB),皮质脑组织的形态和结构是由伊文思蓝(EB)染色,苏木精 - 曙红(H&E)和尼氏观察染色,原位细胞死亡检测试剂盒,和透射电子显微镜(TEM)。为了研究NRG-1β是否表现出通过JNK信号传导途径,JNK的活性和磷酸MKK4,磷酸化JNK,泛JNK和磷酸的c-Jun水平一个显著的神经保护作用进行了使用JNK活性测试筛选试剂盒,免疫荧光标记,和Western印迹分析,分别。结果在NRG-1β治疗组,伴随着JNK活性的降低,磷酸化JNK,磷酸化MKK4和磷酸的c-Jun蛋白质水平降低,缺血诱导的细胞凋亡降低,神经细胞的异常形态结构被改善,所述BBB完整性恢复,和梗死体积减少。与此同时,神经功能恢复显著。结论NRG-1β施加在MCAO / R大鼠通过JNK信号途径的神经保护作用。 ]]>

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