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Rapid Identification of Staphylococci Isolated in Clinical Microbiology Laboratories by Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry

机译:基质辅助激光解吸电离-飞行时间质谱法快速鉴定临床微生物学实验室中分离的葡萄球菌

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摘要

Matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF-MS) of intact bacteria yields a reproducible spectrum depending upon growth conditions, strain, or species. Using whole viable bacteria we describe here the application of MALDI-TOF-MS to the identification of coagulase-negative staphylococci (CoNS). Our aim was, once a bacterium has been recognized as Micrococcaceae, to identify peaks in the spectrum that can be used to identify the species or subspecies. MALDI-TOF-MS was performed using bacteria obtained from one isolated colony. One reference strain for each of the 23 clinically relevant species or subspecies of Micrococcaceae was selected. For each reference strain, the MALDI-TOF-MS profile of 10 colonies obtained from 10 different passages was analyzed. For each strain, only peaks that were conserved in the spectra of all 10 isolated colonies and with a relative intensity above 0.1 were retained, thus leading to a set of 3 to 14 selected peaks per strain. The MALDI-TOF-MS profile of 196 tested strains was then compared with that of the set of selected peaks of each of the 23 reference strains. In all cases the best hit was with the set of peaks of the reference strain belonging to the same species as that of the tested strain, thus demonstrating that the 23 sets of selected peaks can be used as a database for the rapid species identification of CoNS. Similar results were obtained using four different growth conditions. Extending this strategy to other groups of relevant pathogenic bacteria will allow rapid bacterial identification.
机译:完整细菌的基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)根据生长条件,菌株或物种产生可重现的光谱。使用完整的活细菌,我们在这里描述MALDI-TOF-MS在鉴定凝固酶阴性葡萄球菌(CoNS)中的应用。我们的目标是,一旦一种细菌被识别为微球菌科,便确定可用于识别物种或亚种的光谱中的峰。 MALDI-TOF-MS使用得自一个分离菌落的细菌进行。为微球菌科的23个临床相关物种或亚种中的每一个选择一个参考菌株。对于每个参考菌株,分析了从10个不同传代获得的10个菌落的MALDI-TOF-MS图谱。对于每个菌株,仅保留了所有10个分离菌落的光谱中保守且相对强度高于0.1的峰,因此每个菌株导致3至14个选定峰的集合。然后将196个测试菌株的MALDI-TOF-MS谱图与23个参考菌株中每一个的选定峰集的谱图进行了比较。在所有情况下,最好的结果是参考菌株的峰集与被测菌株属于同一物种,因此证明了23组选择的峰可以用作快速鉴定CoNS物种的数据库。使用四种不同的生长条件获得了相似的结果。将此策略扩展到其他相关病原菌组将可以快速鉴定细菌。

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