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Variation of pathways and network profiles reveals the differential pharmacological mechanisms of each effective component to treat middle cerebral artery ischemia-reperfusion mice

机译:途径和网络概况的变化揭示了每种有效成分治疗大脑中动脉缺血再灌注小鼠的不同药理机制

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摘要

Using a system pharmacology strategy, this study evaluated the unique pharmacological characteristics of three different neuroprotective compounds for the treatment of cerebral ischemia-reperfusion. A microarray including 374 brain ischemia-related genes was used to identify the differentially expressed genes among five treatment groups: baicalin, jasminoidin, ursodeoxycholic acid, sham, and vehicle, and MetaCore analysis software was applied to identify the significantly altered pathways, processes and interaction network parameters. At pathway level, 46, 25, and 31 pathways were activated in the baicalin, jasminoidin, and ursodeoxycholic acid groups, respectively. Thirteen pathways mainly related with apoptosis and development were commonly altered in the three groups. Additionally, baicalin also targeted pathways related with development, neurophysiologic process and cytoskeleton remodeling, while jasminoidin targeted pathways related with cell cycle and ursodeoxycholic acid targeted those related with apoptosis and development. At process level, three processes were commonly regulated by the three groups in the top 10 processes. Further interaction network analysis revealed that baicalin, jasminoidin, and ursodeoxycholic acid displayed unique features either on network topological parameters or network structure. Additional overlapping analysis demonstrated that compared with ursodeoxycholic acid, the pharmacological mechanism of baicalin was more similar with that of jasminoidin in treating brain ischemia. The data presented in this study may contribute toward the understanding of the common and differential pharmacological mechanisms of these three compounds.
机译:使用系统药理学策略,本研究评估了三种不同的神经保护性化合物治疗脑缺血-再灌注的独特药理学特征。使用包含374个与脑缺血相关基因的微阵列来鉴定五个治疗组之间的差异表达基因:黄ical苷,茉莉素,熊去氧胆酸,假药和赋形剂,并使用MetaCore分析软件鉴定显着改变的途径,过程和相互作用网络参数。在途径水平上,黄ical苷,茉莉素和熊去氧胆酸组分别激活了46、25和31条途径。在这三组中,与细胞凋亡和发育相关的十三种途径通常被改变。此外,黄ical苷还靶向与发育,神经生理过程和细胞骨架重塑有关的途径,而茉莉素针对与细胞周期有关的途径,而熊去氧胆酸则针对与凋亡和发育有关的途径。在流程级别上,前十大流程中的三个组通常会监管三个流程。进一步的相互作用网络分析表明,黄ical苷,茉莉素和熊去氧胆酸在网络拓扑参数或网络结构上均表现出独特的特征。进一步的重叠分析表明,与熊去氧胆酸相比,黄ical苷与茉莉素在治疗脑缺血方面的药理作用更为相似。这项研究中提供的数据可能有助于理解这三种化合物的共同和不同的药理机制。

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