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首页> 外文期刊>Cell biochemistry and biophysics >Fasudil Hydrochloride Protects Neurons in Rat Hippocampal CA1 Region through Inhibiting GluR6-MLK3-JNKs Signal Pathway
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Fasudil Hydrochloride Protects Neurons in Rat Hippocampal CA1 Region through Inhibiting GluR6-MLK3-JNKs Signal Pathway

机译:盐酸法舒地尔通过抑制GluR6-MLK3-JNKs信号通路保护大鼠海马CA1区神经元

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Fasudil hydrochloride (FH), a Rho kinase (ROCK) inhibitor, has been reported to prevent cerebral ischemia in vivo from increasing cerebral blood flow and inhibiting inflammatory responses. However, it is uncertain by what mechanism a ROCK inhibitor can directly protect neurons against ischemic damage. The present study was designed to evaluate whether FH decreased the increased phosphorylation of glutamate receptor 6 (GluR6) and its downstream in GluR6-MLK3-JNKs signal transduction pathway following global transient cerebral ischemia, as a result of protecting against neuronal apoptosis and death. Transient cerebral ischemia was induced by the Pulsinelli-Brierley four-vessel occlusion method. FH (15 mg/kg) was administered to rats by intraperitoneal injection 30 min before ischemia. The phosphorylation and protein expression of GluR6 at 6 h during reperfusion were detected using immunoprecipitation and immunoblotting analysis. The phosphorylation and protein expression of Mixed lineage kinase 3 (MLK3) at ischemia/reperfusion (I/R) 6 h and c-Jun N-terminal kinase (JNK) at I/R 3 d were detected using immunoblotting analysis, respectively. The same method was used to detect the expression of caspase-3 at I/R 6 h. Furthermore, we also use TUNEL staining and Cresyl violet staining to examine the survival neurons in rat hippocampal CA1 regions after 3 and 5 d reperfusion, respectively. Our study indicated that FH could inhibit the increased phosphorylation of GluR6 and MLK3 and the expression of caspase-3 at peaked 6 h of reperfusion and the phosphorylation of JNK (3 d) (p < 0.5). The results of TUNEL staining and Cresyl violet showed that the number of surviving pyramidal neurons in rats hippocampal CA1 subfield increased markedly in FH-treated rats compared with ischemic groups after 3 or 5 d of reperfusion following ischemia (p < 0.5). These results suggested that FH, as a ROCK inhibitor, may be partly responsible for its protective effects against such damage by taking part in GluR6-MLK3-JNKs signaling pathway which modulates ischemic damage. Taken together, this is the first study investigating Rho and ROCK as the upstream of GluR6 taking part in GluR6-MLK3-JNKs signal transduction pathway following cerebral ischemia.
机译:盐酸法舒地尔(FH)是一种Rho激酶(ROCK)抑制剂,据报道可预防体内脑缺血增加脑血流量并抑制炎症反应。但是,尚不清楚ROCK抑制剂通过哪种机制可以直接保护神经元免受缺血性损伤。本研究旨在评估FH是否可降低全局短暂性脑缺血后GluR6-MLK3-JNKs信号转导通路中谷氨酸受体6(GluR6)及其下游磷酸化的增加,以防止神经元凋亡和死亡。短暂性脑缺血是通过Pulsinelli-Brierley四血管阻塞法诱发的。在缺血前30分钟通过腹膜内注射向大鼠施用FH(15mg / kg)。使用免疫沉淀和免疫印迹分析检测再灌注期间6 h GluR6的磷酸化和蛋白表达。使用免疫印迹分析分别检测了缺血/再灌注(I / R)6 h时混合谱系激酶3(MLK3)和I / R 3 d时c-Jun N-末端激酶(JNK)的磷酸化和蛋白表达。在I / R 6 h使用相同的方法检测caspase-3的表达。此外,我们还使用TUNEL染色和Cresyl紫染色分别检查了3和5 d再灌注后大鼠海马CA1区的存活神经元。我们的研究表明,FH可以抑制GluR6和MLK3的磷酸化增加,以及在再灌注高峰6 h和JNK的磷酸化(3 d)时caspase-3的表达(p <0.5)。 TUNEL染色和甲酚紫的结果表明,与缺血组相比,缺血再灌注3或5 d后,FH处理的大鼠海马CA1亚区存活的锥体神经元数目显着增加(p <0.5)。这些结果表明,FH作为ROCK抑制剂,可能通过参与调节缺血性损伤的GluR6-MLK3-JNKs信号通路来部分负责其对此类损伤的保护作用。两者合计,这是第一个研究Rho和ROCK作为GluR6上游参与脑缺血后GluR6-MLK3-JNKs信号转导途径的研究。

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