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庆大霉素所致听力损失:一项使用美国食品药品监督管理局不良事件报告系统的回顾性研究以及一项使用药物-基因网络分析的毒理学研究。

Gentamicin-induced hearing loss: A retrospective study using the Food and Drug Administration Adverse Event Reporting System and a toxicological study using drug-gene network analysis.

作者信息

Tanaka Mizuki, Matsumoto Kiyoka, Satake Riko, Yoshida Yu, Inoue Misaki, Hasegawa Shiori, Suzuki Takaaki, Iwata Mari, Iguchi Kazuhiro, Nakamura Mitsuhiro

机构信息

Laboratory of Drug Informatics, Gifu Pharmaceutical University, 1-25-4 Daigaku-Nishi, Gifu, 501-1196, Japan.

Department of Pharmacy, Kobe City Medical Center General Hospital, 2-1-1 Minatojima Minamimachi, Chuo-ku, Kobe, 650-0047, Japan.

出版信息

Heliyon. 2021 Jun 29;7(7):e07429. doi: 10.1016/j.heliyon.2021.e07429. eCollection 2021 Jul.

Abstract

The objectives of the study were to evaluate the relationship between gentamicin (GEN) and hearing loss using the Food and Drug Administration Adverse Event Reporting system (FAERS) database and elucidate the potential toxicological mechanism of GEN-induced hearing loss through a drug-gene network analysis. Using the preferred terms and standardized queries from the Medical Dictionary for Regulatory Activities, we calculated the reporting odds ratios (RORs). We extracted GEN-associated genes (seed genes) and analyzed drug-gene interactions using the ClueGO plug-in in the Cytoscape software and the DIseAse MOdule Detection (DIAMOnD) algorithm. The lower limit of the 95% confidence interval (CI) of the ROR for aminoglycosides (AG) antibacterials was over 1, and the ROR was 5.5 (5.1-6.0). We retrieved 17 seed genes related to GEN from the PharmGKB and Drug Gene Interaction databases. In total, 1018 human genes interacting with GEN were investigated using ClueGO. Through Molecular Complex Detection (MCODE) analysis, we identified 17 local gene clusters. The nodes and edges of the highest-ranked local gene cluster named "Cluster 1" were 30 and 433, respectively. According to the ClueGO analysis using the Kyoto Encyclopedia of Genes and Genomes (KEGG), Cluster 1 genes were highly enriched in "oxidative phosphorylation." According to the ClueGO analysis using ClinVar, Cluster 1 genes were highly enriched in "mitochondrial diseases," "mitochondrial complex I deficiency," "hereditary hearing loss and deafness," and "Leigh syndrome." We identified 60 GEN-associated genes using the DIAMOnD algorithm. Several GEN-associated genes in the DIAMOnD algorithm were highly enriched in "PI3K-Akt signaling pathway," "Ras signaling pathway," "focal adhesion," "MAPK signaling pathway," "regulation of actin cytoskeleton," "oxidative phosphorylation," and "ECM-receptor interaction." Our analysis demonstrated an association between several AGs and hearing loss using the FAERS database. Drug-gene network analysis demonstrated that GEN may be associated with oxidative phosphorylation-associated genes and integrin genes, which may be associated with hearing loss.

摘要

本研究的目的是利用美国食品药品监督管理局不良事件报告系统(FAERS)数据库评估庆大霉素(GEN)与听力损失之间的关系,并通过药物-基因网络分析阐明GEN诱导听力损失的潜在毒理学机制。使用来自《监管活动医学词典》的首选术语和标准化查询,我们计算了报告比值比(ROR)。我们提取了与GEN相关的基因(种子基因),并使用Cytoscape软件中的ClueGO插件和疾病模块检测(DIAMOnD)算法分析药物-基因相互作用。氨基糖苷类(AG)抗菌药物的ROR的95%置信区间(CI)下限超过1,ROR为5.5(5.1-6.0)。我们从PharmGKB和药物基因相互作用数据库中检索到17个与GEN相关的种子基因。使用ClueGO共研究了1018个与GEN相互作用的人类基因。通过分子复合物检测(MCODE)分析,我们确定了17个局部基因簇。排名最高的局部基因簇“簇1”的节点和边分别为30和433。根据使用京都基因与基因组百科全书(KEGG)的ClueGO分析,簇1基因在“氧化磷酸化”中高度富集。根据使用ClinVar的ClueGO分析,簇1基因在“线粒体疾病”、“线粒体复合物I缺乏症”、“遗传性听力损失和耳聋”以及“ Leigh综合征”中高度富集。我们使用DIAMOnD算法确定了60个与GEN相关的基因。DIAMOnD算法中的几个与GEN相关的基因在“PI3K-Akt信号通路”、“Ras信号通路”、“粘着斑”、“MAPK信号通路”、“肌动蛋白细胞骨架调节”、“氧化磷酸化”和“ECM-受体相互作用”中高度富集。我们的分析使用FAERS数据库证明了几种AG与听力损失之间的关联。药物-基因网络分析表明,GEN可能与氧化磷酸化相关基因和整合素基因有关,这可能与听力损失有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a855/8353315/12c10de41115/gr1.jpg

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