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一种基于快速液相色谱-串联质谱法检测……中Tet(X)耐药基因的方法

A rapid liquid chromatography-tandem mass spectrometry based method for the detection of Tet(X) resistance gene in .

作者信息

Zhang Liyun, Xie Jie, Qu Ziyu, Duan Duan, Liu Chujun, Zhang Di, Jiang Haiyang, Dai Xinhua, Jiang You, Fang Xiang, Wu Congming

机构信息

National Key Laboratory of Veterinary Public Health and Safety, College of Veterinary Medicine, China Agricultural University, Beijing, China.

Technology Innovation Center of Mass Spectrometry for State Market Regulation, Center for Advanced Measurement Science, National Institute of Metrology, Beijing, China.

出版信息

Front Microbiol. 2024 Dec 5;15:1477740. doi: 10.3389/fmicb.2024.1477740. eCollection 2024.

Abstract

There is a major public health threat posed by antibiotic resistance around the world. Tigecycline overcomes the resistance mechanisms of traditional tetracyclines and is often seen as the final resort in combating infections caused by bacteria resistant to multiple drugs. However, the introduction of new mobile tet(X) tetracycline destructases is leading to a notable rise in tigecycline resistance. Therefore, a rapid detection method is needed to monitor the spread of tigecycline resistance. In this study, a novel liquid chromatography-tandem mass spectrometry (LC-MS/MS) method to detect tet(X) in bacterial isolates was developed. This method utilized the analysis by LC-MS/MS of metabolite ratios to determine the presence of tet(X). Bacterial suspensions were co-incubated with tigecycline for 1 h, where tet(X) destructase inactivated tigecycline, making a particular metabolite with a 16-Da change in mass. The characterized quantitative ion pairing of tigecycline in the ESI positive mode was observed at 586.1 → 569.1 m/z. The oxygenated tigecycline detection was established at 602.2 → 529.1 m/z. A model was established using 35 tet(X)-positive and 15 tet(X)-negative strains in this study to optimize the cutoff value. Applying the model to analyze 70 bacterial isolates, the sensitivity of the LC-MS/MS test was 98.9% compared to polymerase chain reaction (PCR), and specificity was 100%. This method is rapid and easy to operate, providing results within 1 h, making it more suitable for routine use in clinical microbiology laboratories.

摘要

全球范围内,抗生素耐药性构成了重大的公共卫生威胁。替加环素克服了传统四环素的耐药机制,常被视为对抗多重耐药菌感染的最后手段。然而,新型移动tet(X)四环素破坏酶的出现导致替加环素耐药性显著上升。因此,需要一种快速检测方法来监测替加环素耐药性的传播。在本研究中,开发了一种用于检测细菌分离株中tet(X)的新型液相色谱 - 串联质谱(LC-MS/MS)方法。该方法利用LC-MS/MS分析代谢物比率来确定tet(X)的存在。将细菌悬浮液与替加环素共同孵育1小时,其中tet(X)破坏酶使替加环素失活,产生一种质量有16道尔顿变化的特定代谢物。在电喷雾电离(ESI)正模式下,替加环素的特征定量离子对为586.1→569.1 m/z。氧化替加环素的检测离子对为602.2→529.1 m/z。本研究使用35株tet(X)阳性菌株和15株tet(X)阴性菌株建立了一个模型以优化临界值。将该模型应用于分析70株细菌分离株,与聚合酶链反应(PCR)相比,LC-MS/MS检测的灵敏度为98.9%,特异性为100%。该方法快速且易于操作,1小时内即可得出结果,更适合临床微生物实验室的常规使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daf1/11659754/b220ab49a738/fmicb-15-1477740-g001.jpg

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