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首页> 外文期刊>Journal of Clinical Microbiology >Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry for Combined Species Identification and Drug Sensitivity Testing in Mycobacteria
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Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry for Combined Species Identification and Drug Sensitivity Testing in Mycobacteria

机译:基质辅助激光解吸电离—飞行时间质谱用于分枝杆菌的物种鉴定和药物敏感性测试

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Species identification and drug susceptibility testing (DST) of mycobacteria are important yet complex processes traditionally reserved for reference laboratories. Recent technical improvements in matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) has started to facilitate routine mycobacterial identifications in clinical laboratories. In this paper, we investigate the possibility of performing phenotypic MALDI-based DST in mycobacteriology using the recently described MALDI Biotyper antibiotic susceptibility test rapid assay (MBT-ASTRA). We randomly selected 72 clinical Mycobacterium tuberculosis and nontuberculous mycobacterial (NTM) strains, subjected them to MBT-ASTRA methodology, and compared its results to current gold-standard methods. Drug susceptibility was tested for rifampin, isoniazid, linezolid, and ethambutol (M. tuberculosis, n = 39), and clarithromycin and rifabutin (NTM, n = 33). Combined species identification was performed using the Biotyper Mycobacteria Library 4.0. Mycobacterium-specific MBT-ASTRA parameters were derived (calculation window, m/z 5,000 to 13,000, area under the curve [AUC] of >0.015, relative growth [RG] of <0.5; see the text for details). Using these settings, MBT-ASTRA analyses returned 175/177 M. tuberculosis and 65/66 NTM drug resistance profiles which corresponded to standard testing results. Turnaround times were not significantly different in M. tuberculosis testing, but the MBT-ASTRA method delivered on average a week faster than routine DST in NTM. Databases searches returned 90.4% correct species-level identifications, which increased to 98.6% when score thresholds were lowered to 1.65. In conclusion, the MBT-ASTRA technology holds promise to facilitate and fasten mycobacterial DST and to combine it directly with high-confidence species-level identifications. Given the ease of interpretation, its application in NTM typing might be the first in finding its way to current diagnostic workflows. However, further validations and automation are required before routine implementation can be envisioned.
机译:分枝杆菌的种类鉴定和药敏试验(DST)是重要的,但复杂的过程通常保留给参考实验室。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)的最新技术改进已开始促进临床实验室中常规分枝杆菌的鉴定。在本文中,我们调查了使用最近描述的MALDI Biotyper抗生素药敏试验快速测定法(MBT-ASTRA)在分枝杆菌学中进行基于表型MALDI的DST的可能性。我们随机选择了72例临床结核分枝杆菌和非结核分枝杆菌(NTM)菌株,对其进行了MBT-ASTRA方法学研究,并将其结果与当前的金标准方法进行了比较。测试了对利福平,异烟肼,利奈唑胺和乙胺丁醇(结核分枝杆菌, n = 39)以及克拉霉素和利福布汀(NTM, n = 33)的药物敏感性。使用Biotyper分枝杆菌文库4.0进行组合物种鉴定。得出分枝杆菌特有的MBT-ASTRA参数(计算窗口, m / z 5,000至13,000,曲线[AUC]下面积> 0.015,相对生长[RG] <0.5;请参见正文)有关详细信息)。使用这些设置,MBT-ASTRA分析返回的175/177结核分枝杆菌和65/66 NTM耐药性曲线,与标准测试结果相对应。结核分枝杆菌测试的周转时间没有显着差异,但是MBT-ASTRA方法平均比NTM中的常规DST快一周。数据库搜索返回了90.4%的正确物种级识别,当分数阈值降低到1.65时,识别率提高到98.6%。总之,MBT-ASTRA技术有望促进和固定分枝杆菌DST,并将其与高可信度物种水平鉴定直接结合。鉴于其易于解释,其在NTM分型中的应用可能是找到其通往当前诊断工作流程的第一个方法。但是,在可以设想例行实施之前,需要进一步的验证和自动化。

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