Department of Pathology, Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts, USA.
J Clin Microbiol. 2013 Jul;51(7):2225-31. doi: 10.1128/JCM.00682-13. Epub 2013 May 8.
Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF) is gaining momentum as a tool for bacterial identification in the clinical microbiology laboratory. Compared with conventional methods, this technology can more readily and conveniently identify a wide range of organisms. Here, we report the findings from a multicenter study to evaluate the Vitek MS v2.0 system (bioMérieux, Inc.) for the identification of aerobic Gram-positive bacteria. A total of 1,146 unique isolates, representing 13 genera and 42 species, were analyzed, and results were compared to those obtained by nucleic acid sequence-based identification as the reference method. For 1,063 of 1,146 isolates (92.8%), the Vitek MS provided a single identification that was accurate to the species level. For an additional 31 isolates (2.7%), multiple possible identifications were provided, all correct at the genus level. Mixed-genus or single-choice incorrect identifications were provided for 18 isolates (1.6%). Although no identification was obtained for 33 isolates (2.9%), there was no specific bacterial species for which the Vitek MS consistently failed to provide identification. In a subset of 463 isolates representing commonly encountered important pathogens, 95% were accurately identified to the species level and there were no misidentifications. Also, in all but one instance, the Vitek MS correctly differentiated Streptococcus pneumoniae from other viridans group streptococci. The findings demonstrate that the Vitek MS system is highly accurate for the identification of Gram-positive aerobic bacteria in the clinical laboratory setting.
基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)技术在临床微生物学实验室中作为一种细菌鉴定工具正在得到越来越多的应用。与传统方法相比,该技术可以更方便、更快速地鉴定广泛的微生物。在此,我们报告了一项多中心研究的结果,该研究旨在评估 Vitek MS v2.0 系统(生物梅里埃公司)用于鉴定需氧革兰阳性菌。共分析了 1146 个独特的分离株,代表 13 个属和 42 个种,结果与核酸序列为基础的鉴定方法作为参考方法进行了比较。对于 1146 个分离株中的 1063 个(92.8%),Vitek MS 提供了一个单一的鉴定,准确到种水平。对于另外 31 个分离株(2.7%),提供了多个可能的鉴定,均在属水平正确。对于 18 个分离株(1.6%),提供了混合属或单一选择的错误鉴定。尽管有 33 个分离株(2.9%)没有鉴定结果,但没有一种特定的细菌种属是 Vitek MS 始终无法鉴定的。在代表常见重要病原体的 463 个分离株的亚组中,95%被准确地鉴定到种水平,没有错误鉴定。此外,除了一个例外,Vitek MS 正确地区分了肺炎链球菌和其他草绿色链球菌。研究结果表明,Vitek MS 系统在临床实验室环境中对革兰阳性需氧菌的鉴定具有高度准确性。