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Assessment of the Microbiome Role in Skin Protection Against UV Irradiation Via Network Analysis

机译:通过网络分析评估皮肤保护中的微生物组作用

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Introduction: Diverse microbiotas which have some contributions to gene expression reside in human skin. To identify the protective role of the skin microbiome against UV exposure, protein-protein interaction (PPI) network analysis is used to assess gene expression alteration.Methods: A microarray dataset, GEO accession number GSE117359, was considered in this respect. Differentially expressed genes (DEGs) in the germ-free (GF) and specific pathogen-free (SPF) groups are analyzed by GEO2R. The top significant DEGs were assigned for network analysis via Cytoscape 3.7.2 and its applications.Results: A total of 28 genes were identified as significant DEGs and the centrality analysis of the network indicated that only one of the seven hub-bottlenecks was from queried genes. The gene ontology analysis of Il6, Cxcl2, Cxcl1, TNF, Il10, Cxcl10, and Mmp9 showed that the crucial genes were highly enriched in the immune system.Conclusion: The skin microbiome plays a significant role in the protection of the skin against UV irradiation and the role of TNF and IL6 is prominent in this regard.
机译:介绍:不同的微生物群,对基因表达具有一些贡献所在的人体皮肤。为了鉴定皮肤微生物组免受UV暴露的保护作用,蛋白质 - 蛋白质相互作用(PPI)网络分析用于评估基因表达改变。在这方面考虑了微阵列数据集,地理登录号GSE117359。通过Geo2R分析无菌(GF)和无菌无菌(SPF)基团中的差异表达基因(DEG)。通过Cytoscape 3.7.2分配了最重要的DEG用于网络分析及其应用。结果:总共28个基因被确定为显着的参数,网络的中心分分析表明,只有七个集线器中只有一个来自疑问基因。 IL6,CXCL2,CXCL1,TNF,IL10,CXCL10和MMP9的基因本体分析表明,关键基因在免疫系统中高度富集。结论:皮肤微生物组在保护皮肤抗紫外线照射方面发挥着重要作用在这方面,TNF和IL6的作用是突出的。

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