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Mining the key genes for ventilator-induced lung injury using co-expression network analysis

机译:使用共表达网络分析开采呼吸机诱导的肺损伤的关键基因

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摘要

Mechanical ventilation is extensively adopted in general anesthesia and respiratory failure management, but it can also induce ventilator-induced lung injury (VILI). Therefore, it is of great urgency to explore the mechanisms involved in the VILI pathogenesis, which might contribute to its future prevention and treatment. Four microarray datasets from the GEO database were selected in our investigation, and were subjected to the Weighted Gene Co-Expression Network Analysis (WGCNA) to identify the VILI-correlated gene modules. The limma package in R software was used to identify the differentially expressed genes (DEGs) between the VILI and control groups. WGCNA was constructed by merging the {"type":"entrez-geo","attrs":{"text":"GSE9314","term_id":"9314"}}GSE9314, {"type":"entrez-geo","attrs":{"text":"GSE9368","term_id":"9368"}}GSE9368, {"type":"entrez-geo","attrs":{"text":"GSE11434","term_id":"11434"}}GSE11434 and {"type":"entrez-geo","attrs":{"text":"GSE11662","term_id":"11662"}}GSE11662 datasets. A total of 49 co-expression network modules were determined as associated with VILI. The intersected genes between hub genes screened from DEGs for VILI and those identified using WGCNA were as follows: Tlr2, Hmox1, Serpine1, Mmp9, Il6, Il1b, Ptgs2, Fos and Atf3, which were determined to be key genes for VILI. Those key genes were validated by {"type":"entrez-geo","attrs":{"text":"GSE86229","term_id":"86229"}}GSE86229 and quantitative PCR (qPCR) experiment to have significantly statistical difference in their expression between the VILI and control groups. In a nutshell, nine key genes with expression differences in VILI were screened by WGCNA by integrating multiple datasets.
机译:在全身麻醉和呼吸衰竭管理中广泛采用机械通风,但也可以诱导呼吸机诱导的肺损伤(Vili)。因此,探索vili发病机制的机制具有很大的紧迫性,这可能导致其未来的预防和治疗有助于。在我们的研究中选择了来自Geo数据库的四个微阵列数据集,并进行了加权基因共表达网络分析(WGCNA)以鉴定Vili相关的基因模块。 R软件中的Limma包用于鉴定Vili和对照组之间的差异表达的基因(DEGS)。通过合并{“类型”:“entrez-geo”,“attrs”:{“text”:“gse9314”,“term_id”,“term_id”:“9314”}} gse9314,{“type”:“type”:“type”:“type”:entrez-geo “,”attrs“:{”text“:”gse9368“,”term_id“:”9368“}} gse9368,{”type“:”entrez-geo“,”attrez-geo“,”attrs“:{”text“:{”text“:”gse11434“, “term_id”:“11434”}} GSE11434和{“类型”:“Entrez-Geo”,“attrs”:{“text”:“gse11662”,“term_id”:“11662”}} GSE11662数据集。总共49个共表达网络模块与Vili相关。从Vili的DEGS筛选的轮毂基因之间的相交基因和使用WGCNA鉴定的那些如下:TLR2,HMOX1,血肽1,MMP9,IL6,IL1B,PTGS2,FOS和ATF3,其被确定为VILI的关键基因。这些关键基因被{“类型”验证:“entrez-geo”,“attrs”:{“text”:“gse86229”,“term_id”:“86229”}} GSE86229和定量PCR(QPCR)实验显着差异与对照组之间表达的统计学差异。在NutShell中,通过对多个数据集进行WGCNA,通过WGCNA筛选九个关键基因。

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