代谢组学
左氧氟沙星
抗生素
化学
生物化学
药理学
新陈代谢
代谢途径
乳酸
细菌
生物
色谱法
遗传学
作者
Shisui Feng,Yue Guo,Qianyi Wang,Mingwei Meng,Xi Liu,Chi Zhang,Hua Zheng,Hongwei Guo,Rigang Lu,Danfeng Li,Zhiheng Su,Hui Song,Yonghong Liang
摘要
Antibiotic-associated diarrhea is a common adverse reaction caused by the widespread use of antibiotics. The decrease in probiotics is one of the reasons why antibiotics cause drug-induced diarrhea. However, few studies have addressed the intrinsic mechanism of antibiotics inhibiting probiotics. To investigate the underlying mechanism of levofloxacin against Bifidobacterium adolescentis, we used a metabolomics mass spectrometry-based approach and molecular docking analysis for a levofloxacin-induced B. adolescentis injury model. The results showed that levofloxacin reduced the survival rate of B. adolescentis and decreased the number of B. adolescentis. The untargeted metabolomics analysis identified 27 potential biomarkers, and many of these metabolites are involved in energy metabolism, amino acid metabolism and the lipid metabolism pathway. Molecular docking showed that levofloxacin can bind with aminoacyl-tRNA synthetase and lactic acid dehydrogenase. This result provides a novel insight into the mechanism of the adverse reactions of levofloxacin.
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