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Bioinformatics analysis of the gene expression profiles in human intervertebral disc degeneration associated with inflammatory cytokines

机译:与炎症细胞因子相关的人椎间盘变性基因表达谱的生物信息学

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BACKGROUND: To investigate the microarray data on the gene expression profiles of intervertebral disc degeneration related to cytokine exposure. The purpose of the study was to identify the key genes that were differentially expressed in these disc cells compared to cells without inflammatory cytokine treatment, using bioinformatics analyses, and to explore the related signaling pathways and interaction networks, providing clues to the molecular mechanisms of disc degeneration for future experimental studies.METHODS: The gene expression profiles data were obtained using the same microarray platform for two groups of patients suffering from degenerative disc diseases: GSE4I883 (Human annulus disc cells exposed to TNF-a; 4 samples) and GSE27494 (Human annulus disc cells exposed to IL-l?; 4 samples). The genes that were differentially expressed in these two datasets compared to control disc cells (without cytokine exposure; 4 samples each) were identified using the R language, and were pooled using the Excel software program to select the common differentially expressed genes in the two datasets. The initial functional clustering, signaling pathways and protein-protein interaction relationship analyses were conducted using the DAVID and STRING software programs.RESULTS: Of the 255 concomitantly and differentially expressed genes identified after respective treatment with TNF-α and 1 L-1 ?. 141 were up-regulated and 114 were down-regulated. The gene ontology annotation analysis showed that these differentially expressed genes were primarily associated with cytokine activity, growth factor activity, the inflammatory reaction and the response to injury. The signaling pathway analysis showed that these differentially expressed genes were mainly related to the interactions of cytokines, apoptosis and NOD-like receptor signaling pathways. The interaction network analysis indicated that PTGS2, ICAM I. NOV and other genes may play a role in disc degeneration. CONCLUSIONS: We found that ICAM1 and other genes may play a role in the development of disc degeneration induced by inflammatory reactions using a bioinformatics analysis of the gene expression profiles of degenerative intervertebral disc cells stimulated with inflammatory factors, suggesting that bioinformatics methods can be used to identify potential target for intervertebral disc degeneration.
机译:背景:研究与细胞因子暴露有关的椎间盘变性的基因表达谱的微阵列数据。该研究的目的是鉴定与没有炎症细胞因子治疗的细胞相比在这些盘细胞中差异表达的关键基因,使用生物信息学分析,并探索相关的信号通路和相互作用网络,为光盘的分子机制提供线索未来实验研究的退化。方法:使用相同的微阵列平台获得两组患有退化椎间盘疾病的患者的基因表达谱数据:GSE4i883(暴露于TNF-A; 4样品的人环盘细胞)和GSE27494(人环形盘细胞暴露于IL-L?; 4个样品)。与对照盘细胞(不含细胞因子暴露;每个)差异表达在这两个数据集中的基因使用R语言识别,并且使用Excel软件程序汇集了两个数据集中的常见差分表达基因的汇集。使用David和String软件程序进行初始功能聚类,信号途径和蛋白质 - 蛋白质相互作用关系分析。结果:在各自治疗后鉴定的255且差异表达的基因在各自的TNF-α和1 L-1治疗后鉴定出来。上调141,下调114个。基因本体注释分析表明,这些差异表达基因主要与细胞因子活性,生长因子活性,炎症反应和对损伤的反应相关。信号传导途径分析表明,这些差异表达的基因主要与细胞因子,细胞凋亡和点状受体信号传导途径的相互作用有关。相互作用网络分析表明,PTGS2,ICAM I. 11月和其他基因可能在椎间盘变性中发挥作用。结论:我们发现ICAM1和其他基因可能在使用炎症因素刺激的退行性椎间盘细胞的基因表达谱的基因表达谱诱导的炎症反应诱导的椎间盘变性的发挥作用,表明生物信息学方法可用于识别椎间盘变性的潜在目标。

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