基因敲除
活力测定
细胞凋亡
基因沉默
污渍
高氧
流式细胞术
生物
活性氧
程序性细胞死亡
分子生物学
癌症研究
细胞生物学
医学
基因
肺
生物化学
内科学
作者
Xiaoqin Wang,Song Qin,Yingcong Ren,Banghai Feng,Junya Liu,Kun Yu,Hong Yu,Zhenliang Liao,Hong Mei,Mei Lin Tan
标识
DOI:10.1177/09603271231222873
摘要
Background: Hyperoxia-induced acute lung injury (HALI) is a complication to ventilation in patients with respiratory failure, which can lead to acute inflammatory lung injury and chronic lung disease. The aim of this study was to integrate bioinformatics analysis to identify key genes associated with HALI and validate their role in H 2 O 2 -induced cell injury model. Methods: Integrated bioinformatics analysis was performed to screen vital genes involved in hyperoxia-induced lung injury (HLI). CCK-8 and flow cytometry assays were performed to assess cell viability and apoptosis. Western blotting was performed to assess protein expression. Results: In this study, glycoprotein non-metastatic melanoma protein B ( Gpnmb) was identified as a key gene in HLI by integrated bioinformatics analysis of 4 Gene Expression Omnibus (GEO) datasets (GSE97804, GSE51039, GSE76301 and GSE87350). Knockdown of Gpnmb increased cell viability and decreased apoptosis in H 2 O 2 -treated MLE-12 cells, suggesting that Gpnmb was a proapoptotic gene during HALI. Western blotting results showed that knockdown of Gpnmb reduced the expression of Bcl-2 associated X (BAX) and cleaved-caspase 3, and increased the expression of Bcl-2 in H 2 O 2 treated MLE-12 cells. Furthermore, Gpnmb knockdown could significantly reduce reactive oxygen species (ROS) generation and improve the mitochondrial membrane potential. Conclusion: The present study showed that knockdown of Gpnmb may protect against HLI by repressing mitochondrial-mediated apoptosis.
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