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首页> 外文期刊>European review for medical and pharmacological sciences. >Relationship between NogoA/NgR1/RhoA signaling pathway and the apoptosis of cerebral neurons after cerebral infarction in rats
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Relationship between NogoA/NgR1/RhoA signaling pathway and the apoptosis of cerebral neurons after cerebral infarction in rats

机译:大鼠脑梗死后诺若/ NGR1 / RHOA信号通路与脑神经元凋亡的关系

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OBJECTIVE: The aim of this study was to investigate the effect and the mechanism of the NogoA/NgR1/RhoA signaling pathway on the apoptosis of neurons in cerebral infarction (CI) rats. Our findings might provide references for clinical prevention and treatment of CI. MATERIALS AND METHODS: A total of 60 adult male Wistar rats were randomly divided into 3 groups, including: Sham operation group (Sham group), CI group, and CI + NogoA gene knockout group (CI + NogoA KO group) using a random number table. The model of CI was successfully constructed using suture method in rats of CI group and CI + NogoA KO group. Only blood vessels were exposed in Sham group. At 2 days after CI operation, the rats were killed, and brain tissues were collected. Reverse Transcription-Polymerase Chain Reaction (RT-PCR) and Western blotting were used to detect the messenger ribonucleic acid (mRNA) and protein expression levels of NogoA/NgR1/RhoA in brain lesion tissues of rats in the three groups, respectively. Subsequently, the pathological damage of brain tissues was detected via hematoxylin and eosin (H&E) staining. TTC staining was carried out to evaluate the infarction area in each group. Terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) staining was conducted to measure the apoptosis level of neurons in brain tissues of rats in each group. Additionally, the level of Nissl’s body in brain tissues of each group was examined by Nissl staining. Furthermore, the expression level of the platelet-derived growth factor (PDGF) in brain tissues of rats in the three groups was measured via immunohistochemistry. RESULTS: The mRNA and protein expression levels of the NogoA/NgR1/RhoA signaling pathway in brain tissues of rats in CI group increased significantly (p0.05). NogoA KO could significantly reduce the infarction area of brain tissues in rats (p0.05). H&E staining and Nissl’s body staining revealed that neurons in the brain tissues of rats showed evident edema and disordered arrangement after CI. Meanwhile, the number of Nissl’s body was remarkably reduced. However, after KO of NogoA, brain tissue damage was significantly alleviated in rats, and the number of Nissl’s body increased remarkably at the same time (p0.05). According to TUNEL staining results, inhibiting NogoA could notably reverse CI-induced apoptosis of neurons in brain tissues of rats (p0.05). Immunohistochemical staining results demonstrated that the expression of PDGF in brain tissues of rats in CI group decreased markedly, whereas was significantly elevated in rats of CI + NogoA KO group (p0.05). CONCLUSIONS: The expression of the NogoA/NgR1/RhoA signaling pathway was significantly elevated in brain tissues of CI rats. Furthermore, suppressing the NogoA/NgR1/RhoA signaling pathway could reduce CI-induced apoptosis of neurons in rats.
机译:目的:本研究的目的是探讨Nogoa / Ngro1 / RhoA信号通路对脑梗死(CI)大鼠神经元凋亡的影响和机制。我们的研究结果可能提供CI临床预防和治疗的参考。材料和方法:将60只成年男性Wistar大鼠随机分为3组,包括:假手术组(假组),CI组和CI + Nogoa基因敲除组(CI + Nogoa Ko组)使用随机数桌子。在CI组和CI + Nogoa KO组大鼠中使用缝合方法成功构建了CI模型。只有血管在假组织中暴露。在CI操作后2天,杀死大鼠,收集脑组织。逆转录聚合酶链反应(RT-PCR)和Western印迹分别用于检测三组大鼠大鼠脑病变组织中Nogoa / Ngr1 / RhoA的信使核糖核酸(mRNA)和蛋白表达水平。随后,通过苏木精和曙红(H&E)染色来检测脑组织的病理损伤。进行TTC染色以评估每组的梗死区域。进行末端脱氧核苷酸转移酶DUTP缺口末端标记(TUNEL)染色以测量每组大鼠脑组织中神经元的细胞凋亡水平。此外,通过NISSL染色检查每组脑组织中NISSL体内的水平。此外,通过免疫组织化学测量三组大鼠脑组织中血小板衍生的生长因子(PDGF)的表达水平。结果:CI组大鼠脑组织中NogoA / NGR1 / RhoA信号通路的mRNA和蛋白表达水平显着增加(P <0.05)。 Nogoa Ko可以显着降低大鼠脑组织的梗死区域(P <0.05)。 H&E染色和NISSL的身体染色显示,大鼠脑组织中的神经元显示出明显的水肿和CI后的无序排列。同时,NISSL的身体数量显着降低。然而,在诺戈阿的Ko之后,大鼠脑组织损伤显着缓解,尼斯勒的身体数量同时增加(P <0.05)。根据TUNEL染色结果,抑制Nogoa可以鉴于大鼠脑组织中神经元的诱导性肾凋亡(P <0.05)。免疫组织化学染色结果表明,CI组大鼠大鼠脑组织中PDGF的表达明显下降,而CI + Nogoa KO组大鼠显着升高(P <0.05)。结论:Ci大鼠脑组织显着升高了Nogoa / Ngro1 / RhoA信号通路的表达。此外,抑制NogoA / NGR1 / RHOA信号通路可以降低大鼠神经元的CI诱导的凋亡。

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