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Analysis of Effects of Natural Cerebrolysin on the Gene Expression Profile of Mesenchymal Stem Cells in Rats by Genome Chip and Bioinformatics

机译:基因组芯片和生物信息学,天然大脑蛋白对小学干细胞基因表达谱的影响分析

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Objective: In order to analyze the effects of Natural Cerebrolycin (NC) on the gene expression profile of Mesenchymal Stem Sells (MSCs), the feasibility of NC's clinical use for Alzheimer's Disease (AD) and the mechanism of its gene molecular Pharmacodynamics were studied. Method: The MSCs of rats were isolated and purified by whole bone marrow adherence and adherence screening method, the homology of the cells was analyzed by immunocytochemistry staining technique. The differential expression genes of MSCs treated with NC were analyzed by Affymetric whole genome gene chip analysis method. Result: Rat MSCs of higher purity (more than 90%) was acquired. After MSCs were treated with NC, 45 differential expression genes were displayed, the expressions of 21 genes among them were up-regulated (FC≥2) and the expressions of 24 genes were significantly down-regulated (FC≤-2).These genes included the genes participate in TGFβ/BMPs, Hedgehog, Bmp and Wnt signal transduction pathways that have relations with cell differentiation & development and/or nervous system function, and learning and memorizing functions, the genes of Ras and G protein-coupled receptor signaling pathways that have relations with cell growth and proliferation and apoptosis, and the genes of MAPKKK cascading. Conclusion: NC's anti-AD pharmacodynamic mechanism of molecular genes could have relations with numerous gene expressions of some signal transduction pathways, which participate in regulating nerve cell differentiation and development, nervous system function, functions of learning and memory, and common cell functions of growth, differentiation, proliferation and apoptosis.
机译:目的:为了分析自然Cerebrolycin(NC)对间充质的基因的表达谱的影响干塞尔斯(MSCS),NC的临床用于阿尔茨海默氏病(AD)和它的基因分子的药效学的机制的可行性进行了研究。方法:通过全骨髓粘附和粘附筛选方法分离并纯化大鼠MSCs,通过免疫细胞化学染色技术分析细胞的同源性。通过酰胺全基因组基因芯片分析方法分析用NC处理的MSCs的差异表达基因。结果:获得了更高纯度的大鼠MSC(超过90%)。用NC处理MSCs后,显示45种差异表达基因,其中21个基因的表达上调(Fc≥2),24个基因的表达显着下调(Fc≤-2)。这些基因包括该基因参与TGFβ/ BMP,刺猬,BMP和WNT信号转导途径,其与细胞分化和开发和/或神经系统功能,以及学习和记忆功能,RAS和G蛋白偶联受体信号传导途径的关系具有与细胞生长和增殖和凋亡的关系,以及MAPKKK级联的基因。结论:NC的分子基因的抗AD药效学机理可以具有与一些信号转导途径的许多基因表达的关系,参与调节神经细胞分化和发育,神经系统功能,学习功能,以及生长的常见细胞功能,分化,增殖和凋亡。

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