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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Multiple protein and mRNA expression correlations in the rat cerebral cortex after ischemic injury and repair due to buchang naoxintong jiaonang (BNJ) intervention
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Multiple protein and mRNA expression correlations in the rat cerebral cortex after ischemic injury and repair due to buchang naoxintong jiaonang (BNJ) intervention

机译:缺血性伤害后大鼠脑皮质中的多种蛋白质和mRNA表达相关性,由Buchang Naoxintong jiaonang(bnj)干预

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Stroke is the one of the most common causes of death worldwide. Systematic description and characterization of the types of stroke and the effects induced in the cerebral cortex have not been performed so far. Here, we analyzed the protein and mRNA expression in the cerebral cortex12 h after ischemic injury and repair. Drug intervention using Buchang Naoxintong Jiaonang (BNJ), which has been reported to have good clinical therapeutic effects, was selected for our study of cerebral ischemic repair in rat models. Two powerful techniques can be merged in a single study to examine and yield new perspectives in physiology and pathophysiology. Combining LC-MS/MS and DNA microarray analyses of the rat cerebral cortex confidently identified two large datasets in more than three biological replicates. Quantitative approaches were then used to quantify the differences among the four experimental groups the naive, sham, middle cerebral artery occlusion MCAO and MCAO + BNJ groups by a label-free proteomics approach and a Cy5-labeled microarray approach. In brief, 3217 unique proteins and 24,300 unique gene symbols were confidently identified. Bioinformatics analysis revealed that of these unique proteins and gene symbols, 269 proteins and 632 gene symbols were identified to be differentially expressed. The results of subcellular localization, hierarchical clustering, and pathway enrichment analyses were combined with the results of the injury and repair phase analyses, and twelve proteins and twenty-seven gene symbols were significantly differentially expressed and were identified as potential candidates for cerebral ischemic injury involvement; all the candidates were verified by western blot and quantitative real-time PCR analysis. The primary enriched MAPK signaling pathway may play a key role in the molecular mechanisms related to cerebral ischemic injury. The observations of the present study help to illuminate the regulatory mechanism of cerebral ischemic injury and repair due to BNJ intervention.
机译:中风是全世界最常见的死亡原因之一。到目前为止,还没有进行系统的描述和表征脑皮层中脑皮层中诱导的效果。在这里,我们在缺血性损伤和修复后分析了脑皮质中的蛋白质和mRNA表达。据报道,采用Buchang Naoxintong Jiaonang(BNJ)的药物干预,为我们的脑缺血修复在大鼠模型中选择了良好的临床治疗效果。在一项研究中可以合并两种强大的技术,以检查和产生生理学和病理生理学的新透视。结合大鼠脑皮质的LC-MS / MS和DNA微阵列分析自信地确定了三种生物重复的两个大型数据集。然后使用定量方法来通过无标记的蛋白质组学方法和CY5标记的微阵列方法来量化幼稚,假,中脑动脉闭塞MCAO和MCAO + BNJ组的四种实验组之间的差异。简而言之,3217个独特的蛋白质和24,300个独特的基因符号被自信地识别出来。生物信息学分析显示,这些独特的蛋白质和基因符号,269个蛋白质和632个基因符号被鉴定为差异表达。亚细胞定位,分层聚类和途径富集分析的结果与损伤和修复相分析的结果相结合,并且12个蛋白质和二十七个基因符号显着表达,并被鉴定为脑缺血性损伤的潜在候选者;所有候选者通过Western印迹和定量实时PCR分析验证。初级富集的MAPK信号通路可能在与脑缺血性损伤相关的分子机制中发挥关键作用。目前研究的观察结果有助于照亮由于BNJ干预而导致的脑缺血性损伤和修复的调节机制。

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