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Identification of Aberrantly Expressed Genes during Aging in Rat Nucleus Pulposus Cells

机译:在大鼠髓核细胞中老化期间异常表达基因的鉴定

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Nucleus pulposus cells (NPCs) play a vital role in maintaining the homeostasis of the intervertebral disc (IVD). Previous studies have discovered that NPCs exhibited malfunction due to cellular senescence during disc aging and degeneration; this might be one of the key factors of IVD degeneration. Thus, we conducted this study in order to investigate the altered biofunction and the underlying genes and pathways of senescent NPCs. We isolated and identified NPCs from the tail discs of young (2 months) and old (24 months) SD rats and confirmed the senescent phenotype through SA-β-gal staining. CCK-8 assay, transwell assay, and cell scratch assay were adopted to detect the proliferous and migratory ability of two groups. Then, a rat Gene Chip Clariom? S array was used to detect differentially expressed genes (DEGs). After rigorous bioinformatics analysis of the raw data, totally, 1038 differentially expressed genes with a fold?change1.5 were identified out of 23189 probes. Among them, 617 were upregulated and 421 were downregulated. Furthermore, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis were conducted and revealed numerous number of enriched GO terms and signaling pathways associated with senescence of NPCs. A protein-protein interaction (PPI) network of the DEGs was constructed using the Search Tool for the Retrieval of Interacting Genes (STRING) database and Cytoscape software. Module analysis was conducted for the PPI network using the MCODE plugin in Cytoscape. Hub genes were identified by the CytoHubba plugin in Cytoscape. Derived 5 hub genes and most significantly up- or downregulated genes were further verified by real-time PCR. The present study investigated underlying mechanisms in the senescence of NPCs on a genome-wide scale. The illumination of molecular mechanisms of NPCs senescence may assist the development of novel biological methods to treat degenerative disc diseases.
机译:核骨髓细胞(NPC)在维持椎间盘(IVD)的稳态方面发挥着至关重要的作用。以前的研究发现,由于在椎间盘老化和变性期间,NPC由于细胞衰老而表现出故障;这可能是IVD退化的关键因素之一。因此,我们进行了该研究,以研究改变的生物功能和衰老NPC的潜在基因和途径。我们从年轻(2个月)和旧(24个月)SD大鼠的尾盘中孤立并鉴定了NPC,并通过SA-β-Gal染色证实了衰老表型。 CCK-8测定,通过Transwell测定和细胞划痕测定检测两组的增生和迁移能力。然后,大鼠基因芯片克拉米蛋白? S阵列用于检测差异表达基因(DEG)。经过严格的生物信息学分析原料数据,完全,1038个差异表达的基因折叠αΔδ1.5的探针鉴定出来> 1.5。其中,上调617,下调了421个。此外,进行基因本体(GO)和京都基因组(KEGG)途径分析,并揭示了许多与NPC衰老相关的富集的术语和信号通路。使用搜索工具来修建DEG的蛋白质 - 蛋白质相互作用(PPI)网络,用于检索相互作用基因(串)数据库和Cytoscape软件。使用Cytoscape中的MCODE插件对PPI网络进行模块分析。通过Cytoscape的细胞霍布布蛋白鉴定了轮毂基因。通过实时PCR进一步验证衍生的5个轮毂基因和最显着的上调基因。本研究研究了基因组规模的NPC衰老中的潜在机制。 NPCS衰老的分子机制的照明可以帮助开发新的生物学方法治疗退行性椎间盘疾病。

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