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首页> 外文期刊>Journal of Clinical Microbiology >Optimization of Routine Identification of Clinically Relevant Gram-Negative Bacteria by Use of Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry and the Bruker Biotyper
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Optimization of Routine Identification of Clinically Relevant Gram-Negative Bacteria by Use of Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry and the Bruker Biotyper

机译:使用基质辅助激光解吸电离-飞行时间质谱和Bruker Biotyper优化临床相关革兰氏阴性菌的常规鉴定

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Matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) might complement and one day replace phenotypic identification of bacteria in the clinical microbiology laboratory, but there is no consensus standard regarding the requirements for its validation prior to clinical use in the United States. The objective of this study was to assess the preanalytical variables influencing Gram-negative identification by use of the Bruker Biotyper MALDI-TOF MS system, including density of organism spotting on a stainless steel target plate and the direct overlay of organisms with formic acid. A heavy smear with formic acid overlay was either superior or equivalent to alternative smear conditions. Microbiological preanalytical variables were also assayed, such as culture medium, growth temperature, and use of serial subculture. Postanalytical analysis included the application of modified species-level identification acceptance criteria. Biotyper identifications were compared with those using traditional phenotypic methods, and discrepancies were resolved with 16S rRNA gene sequencing. Compared to the recommended score cutoffs of the manufacturer, the application of optimized Biotyper score cutoffs for species-level identification increased the rate of identification by 6.75% for the enteric Gram-negative bacteria and 4.25% for the nonfermenting Gram-negative bacteria. Various incubation temperatures, growth medium types, and repeat subcultures did not result in misidentification. We conclude that the Bruker MALDI Biotyper is a robust system for the identification of Gram-negative organisms in the clinical laboratory and that meaningful performance improvements can be made by implementing simple pre- and postanalytical techniques.
机译:在临床微生物学实验室中,基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)可能会补充细菌,并且有一天会取代细菌的表型鉴定,但在临床使用前对其验证的要求尚无共识标准在美国。这项研究的目的是通过使用Bruker Biotyper MALDI-TOF MS系统评估影响革兰氏阴性鉴定的分析前变量,包括生物在不锈钢靶板上的斑点密度以及生物与甲酸的直接覆盖。覆盖有甲酸的重涂片优于或等同于其他涂片条件。还分析了微生物的分析前变量,例如培养基,生长温度和连续传代培养的使用。分析后分析包括应用经过修改的物种级别识别接受标准。生物类型识别与传统的表型方法进行了比较,并通过16S rRNA基因测序解决了差异。与制造商建议的分数截止值相比,优化的Biotyper分数截止值用于物种级鉴定的结果使肠道革兰氏阴性菌的鉴定率提高了6.75%,非发酵革兰氏阴性菌的鉴定率提高了4.25%。各种孵育温度,生长培养基类型和重复的亚培养都不会导致错误识别。我们得出的结论是,布鲁克MALDI Biotyper是用于在临床实验室中鉴定革兰氏阴性生物的强大系统,可以通过实施简单的分析前和分析后技术来实现有意义的性能改进。

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