Academy of Anesthesiology, Weifang Medical University, Weifang, China.
Qingdao Central Hospital, Central Hospital Affiliated to Qingdao University, Qingdao, China.
Comput Intell Neurosci. 2022 Apr 26;2022:4911773. doi: 10.1155/2022/4911773. eCollection 2022.
The aim of this study is to probe the possible molecular mechanisms underlying the effects of propofol on HT22 cells. HT22 cells treated with different concentrations were sequenced, and then the results of the sequencing were analyzed for dynamic trends. Expression pattern clustering analysis was performed to demonstrate the expression of genes in the significant trend modules in each group of samples. We first chose the genes related to the trend module for WGCNA analysis, then constructed the PPI network of module genes related to propofol treatment group, and screened the key genes. Finally, GSEA analysis was performed on the key genes. Overall, 2,506 genes showed a decreasing trend with increasing propofol concentration, and 1,871 genes showed an increasing trend with increasing propofol concentration. WGCNA analysis showed that among them, turquoise panel genes were negatively correlated with propofol treatment, and genes with Cor R >0.9 in the turquoise panel were selected for PPI network construction. The MCC algorithm screened a total of five key genes (CD86, IL10RA, PTPRC, SPI1, and ITGAM). GSEA analysis showed that CD86, IL10RA, PTPRC, SPI1, and ITGAM are involved in the PRION_DISEASES pathway. Our study showed that propofol sedation can affect mRNA expression in the hippocampus, providing new ideas to identify treatment of nerve injury induced by propofol anesthesia.
本研究旨在探讨异丙酚对 HT22 细胞作用的可能分子机制。用不同浓度处理 HT22 细胞,测序后分析测序结果的动态趋势。对表达模式聚类分析,以证明各组样本中显著趋势模块基因的表达。我们首先选择与趋势模块相关的基因进行 WGCNA 分析,然后构建与异丙酚处理组相关的模块基因的 PPI 网络,并筛选关键基因。最后对关键基因进行 GSEA 分析。总体而言,随着异丙酚浓度的增加,有 2506 个基因呈下降趋势,有 1871 个基因呈上升趋势。WGCNA 分析表明,其中,绿松石面板基因与异丙酚处理呈负相关,在绿松石面板中 Cor R >0.9 的基因被选择用于 PPI 网络构建。MCC 算法共筛选出 5 个关键基因(CD86、IL10RA、PTPRC、SPI1 和 ITGAM)。GSEA 分析表明,CD86、IL10RA、PTPRC、SPI1 和 ITGAM 参与了 PRION_DISEASES 通路。本研究表明异丙酚镇静可影响海马中的 mRNA 表达,为鉴定异丙酚麻醉诱导的神经损伤的治疗提供了新思路。