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首页> 外文期刊>European journal of clinical microbiology and infectious diseases: Official publication of the European Society of Clinical Microbiology >Matrix-assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF MS) for rapid identification of micro-organisms in the routine clinical microbiology laboratory
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Matrix-assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF MS) for rapid identification of micro-organisms in the routine clinical microbiology laboratory

机译:基质辅助激光解吸电离飞行质谱(MALDI-TOF MS),用于在常规临床微生物实验室中快速鉴定微生物

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摘要

The study evaluates the utility of matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry (MALDI-TOF MS) Vitek MS for identification of microorganisms in the routine clinical microbiology laboratory. From May 2013 to April 2014, microbial isolates recovered from various clinical samples were identified by Vitek MS. In case of failure to identify by Vitek MS, the isolate was identified using the Vitek 2 system (bioMerieux, France) and serotyping wherever applicable or otherwise by nucleic acid-mediated methods. All the moulds were identified by Lactophenol blue mounts, and mycobacterial isolates were identified by molecular identification systems including AccuProbe (bioMerieux, France) or GenoType Mycobacterium CM (Hain Lifescience, Germany). Out of the 12,003 isolates, the Vitek MS gave a good overall ID at the genus and or species level up to 97.7% for bacterial isolates, 92.8% for yeasts and 80% for filamentous fungi. Of the 26 mycobacteria tested, only 42.3% could be identified using the Saramis RUO (Research Use Only) database. VITEK MS could not identify 34 of the 35 yeast isolates identified as C. haemulonii by Vitek 2. Subsequently, 17 of these isolates were identified as Candida auris (not present in the Vitek MS database) by 18S rRNA sequencing. Using these strains, an in-house superspectrum of C. auris was created in the VITEK MS database. Use of MALDI-TOF MS allows a rapid identification of aerobic bacteria and yeasts in clinical practice. However, improved sample extraction protocols and database upgrades with inclusion of locally representative strains is required, especially for moulds.
机译:该研究评估了基质辅助激光解吸/电离飞行时间谱(MALDI-TOF MS)Vitek MS的效用,以鉴定常规临床微生物实验室中的微生物。从2013年5月至2014年4月,通过Vitek MS鉴定了各种临床样品中回收的微生物分离株。如果失败识别Vitek MS,则使用Vitek 2系统(BioMerieux,法国)和血清型识别隔离物,无论何处都是通过核酸介导的方法。所有模具通过内乳蛋白醇蓝色安装件鉴定,并通过分子识别系统鉴定分枝杆菌分离物,包括accuprobe(BioMerieux,法国)或基因型分枝杆菌CM(Hain LifeScience,德国)。在12,003个分离物中,Vitek MS在细菌分离株中产生了良好的整体ID,或物种水平高达97.7%,酵母的92.8%和丝状真菌的80%。在测试的26分枝杆菌中,只有42.3%的人可以使用Saramis Ruo(仅限研究使用)数据库来识别。 Vitek MS不能鉴定为鉴定为C. Haemulonii的35酵母分离物中的34次通过Vitek 2鉴定。随后,将其中17个分离株鉴定为Candida Auris(不存在于Vitek MS数据库中),通过18S rRNA测序。使用这些菌株,在Vitek MS数据库中创建了一个内部的C. Auris的超级谱。使用MALDI-TOF MS允许在临床实践中快速鉴定有氧细菌和酵母。然而,需要改进的样品提取方案和数据库升级,包括包含局部代表性菌株,特别是对于模具。

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