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首页> 外文期刊>Journal of Clinical Microbiology >Optimizing Identification of Clinically Relevant Gram-Positive Organisms by Use of the Bruker Biotyper Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry System
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Optimizing Identification of Clinically Relevant Gram-Positive Organisms by Use of the Bruker Biotyper Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry System

机译:通过使用Bruker Biotyper基质辅助激光解吸电离-飞行时间质谱系统优化临床相关革兰氏阳性生物的鉴定

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Matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) can be used as a method for the rapid identification of microorganisms. This study evaluated the Bruker Biotyper (MALDI-TOF MS) system for the identification of clinically relevant Gram-positive organisms. We tested 239 aerobic Gram-positive organisms isolated from clinical specimens. We evaluated 4 direct-smear methods, including “heavy” (H) and “light” (L) smears, with and without a 1-μl direct formic acid (FA) overlay. The quality measure assigned to a MALDI-TOF MS identification is a numerical value or “score.” We found that a heavy smear with a formic acid overlay (H+FA) produced optimal MALDI-TOF MS identification scores and the highest percentage of correctly identified organisms. Using a score of ≥2.0, we identified 183 of the 239 isolates (76.6%) to the genus level, and of the 181 isolates resolved to the species level, 141 isolates (77.9%) were correctly identified. To maximize the number of correct identifications while minimizing misidentifications, the data were analyzed using a score of ≥1.7 for genus- and species-level identification. Using this score, 220 of the 239 isolates (92.1%) were identified to the genus level, and of the 181 isolates resolved to the species level, 167 isolates (92.2%) could be assigned an accurate species identification. We also evaluated a subset of isolates for preanalytic factors that might influence MALDI-TOF MS identification. Frequent subcultures increased the number of unidentified isolates. Incubation temperatures and subcultures of the media did not alter the rate of identification. These data define the ideal bacterial preparation, identification score, and medium conditions for optimal identification of Gram-positive bacteria by use of MALDI-TOF MS.
机译:基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)可以用作快速鉴定微生物的方法。这项研究评估了Bruker Biotyper(MALDI-TOF MS)系统用于鉴定临床上相关的革兰氏阳性生物。我们测试了从临床标本中分离出的239种需氧革兰氏阳性生物。我们评估了4种直接涂片方法,包括“重”(H)和“轻”(L)涂片,有和没有1-μl直接甲酸(FA)覆盖。分配给MALDI-TOF MS标识的质量度量是一个数值或“分数”。我们发现,带有甲酸覆盖层(H + FA)的重涂片产生了最佳的MALDI-TOF MS鉴定得分,并获得了正确鉴定的生物的最高百分比。使用≥2.0的分数,我们确定了239个分离株中的183个(76.6%)至属水平,在解析为物种水平的181个分离物中,有141个分离物(77.9%)被正确鉴定。为了最大化正确识别的数量,同时最大程度减少错误识别,使用≥1.7的分属和物种水平识别对数据进行了分析。使用此分数,在239个菌株中鉴定了220个(92.1%)属于属水平,在181个菌株中已鉴定到物种水平,其中167个菌株(92.2%)可被指定为准确的物种鉴定。我们还评估了可能影响MALDI-TOF MS鉴定的分离物亚类的分析前因素。频繁的亚培养增加了未鉴定菌株的数量。孵育温度和培养基的亚培养物不会改变鉴定率。这些数据定义了使用MALDI-TOF MS最佳鉴定革兰氏阳性细菌的理想细菌制备,鉴定评分和培养基条件。

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