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Systematic analysis on multiple Gene Expression Omnibus data sets reveals fierce immune response in hepatitis B virus‐related acute liver failure

机译:对多基因表达的系统分析综合征数据集揭示了乙型肝炎病毒相关急性肝功能衰竭的激烈免疫应答

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摘要

Acute liver failure (ALF) caused by hepatitis B virus (HBV) is common type of liver failure in the world, with high morbidity and mortality rates. However, the prevalence, genetic background and factors determining the development of HBV‐related ALF are rarely studied. In this study, we examined three Gene Expression Omnibus (GEO) data sets by bioinformatics analysis to identify differentially expressed genes (DEGs), key biological processes and pathways. Immune infiltration analysis showed high immune cells infiltration in HBV‐related ALF tissue. We then confirmed natural killer cells and macrophages infiltration in clinical samples by immunohistochemistry assay, implying these cells play a significant role in HBV‐ALF. We found 1277 genes were co‐up‐regulated and that 1082 genes were co‐down‐regulated in the 3 data sets. Inflammation‐related pathways were enriched in the co‐up‐regulated genes and synthetic metabolic pathways were enriched in the co‐down‐regulated genes. WGCNA also revealed a key module enriching in immune inflammation response and identified 10 hub genes, differentially expressed in an independent data set. In conclusion, we identified fierce immune inflammatory response to elucidate the immune‐driven mechanism of HBV‐ALF and 10 hub genes based on gene expression profiles.
机译:由乙型肝炎病毒(HBV)引起的急性肝功能衰竭(ALF)是世界上常见的肝功能衰竭,发病率高,死亡率高。然而,很少研究患有患病率,遗传背景和决定HBV相关ALF的发展的因素。在这项研究中,我们通过生物信息学分析检查了三种基因表达综合(Geo)数据,以鉴定差异表达基因(DEGS),关键生物过程和途径。免疫渗透分析显示HBV相关ALF组织中的高免疫细胞浸润。然后,我们通过免疫组织化学测定确认了临床样本中的自然杀手细胞和巨噬细胞浸润,暗示这些细胞在HBV-ALF中发挥着重要作用。我们发现1277个基因进行共同调节,并且在3个数据集中共同调节1082个基因。在共度调节基因中富集炎症相关的途径,并在整治局部基因中富集合成代谢途径。 WGCNA还揭示了一种富含免疫炎症反应的关键模块,并确定了在独立数据集中差异表达的10个轮毂基因。总之,我们确定了阐明基于基因表达谱的HBV-ALF和10个枢纽基因的免疫驱动机制的激烈免疫炎症反应。

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