首页> 美国卫生研究院文献>Journal of Clinical Microbiology >Evaluation of Matrix-Assisted Laser Desorption Ionization-Time-of-Flight Mass Spectrometry in Comparison to 16S rRNA Gene Sequencing for Species Identification of Nonfermenting Bacteria
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Evaluation of Matrix-Assisted Laser Desorption Ionization-Time-of-Flight Mass Spectrometry in Comparison to 16S rRNA Gene Sequencing for Species Identification of Nonfermenting Bacteria

机译:基质辅助激光解吸电离-飞行时间质谱与16S rRNA基因测序的比较评价非发酵细菌的物种鉴定。

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摘要

Nonfermenting bacteria are ubiquitous environmental opportunists that cause infections in humans, especially compromised patients. Due to their limited biochemical reactivity and different morphotypes, misidentification by classical phenotypic means occurs frequently. Therefore, we evaluated the use of matrix-assisted laser desorption ionization-time-of-flight mass spectrometry (MALDI-TOF MS) for species identification. By using 248 nonfermenting culture collection strains composed of 37 genera most relevant to human infections, a reference database was established for MALDI-TOF MS-based species identification according to the manufacturer's recommendations for microflex measurement and MALDI BioTyper software (Bruker Daltonik GmbH, Leipzig, Germany), i.e., by using a mass range of 2,000 to 20,000 Da and a new pattern-matching algorithm. To evaluate the database, 80 blind-coded clinical nonfermenting bacterial strains were analyzed. As a reference method for species designation, partial 16S rRNA gene sequencing was applied. By 16S rRNA gene sequencing, 57 of the 80 isolates produced a unique species identification (≥99% sequence similarity); 11 further isolates gave ambiguous results at this threshold and were rated as identified to the genus level only. Ten isolates were identified to the genus level (≥97% similarity); and two isolates had similarity values below this threshold, were counted as not identified, and were excluded from further analysis. MALDI-TOF MS identified 67 of the 78 isolates (85.9%) included, in agreement with the results of the reference method; 9 were misidentified and 2 were unidentified. The identities of 10 randomly selected strains were 100% correct when three different mass spectrometers and four different cultivation media were used. Thus, MALDI-TOF MS-based species identification of nonfermenting bacteria provided accurate and reproducible results within 10 min without any substantial costs for consumables.
机译:非发酵细菌是普遍存在的环境机会主义者,会引起人类尤其是弱势患者的感染。由于其有限的生化反应性和不同的形态型,通过经典表型手段的误识别经常发生。因此,我们评估了使用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)进行物种鉴定。通过使用248个与人类感染最相关的37个属组成的非发酵培养物收集菌株,根据制造商对microflex测量和MALDI BioTyper软件的建议(Bruker Daltonik GmbH,莱比锡,德国),即使用2,000至20,000 Da的质量范围和新的模式匹配算法。为了评估数据库,分析了80种盲编码的临床非发酵细菌菌株。作为物种命名的参考方法,应用了部分16S rRNA基因测序。通过16S rRNA基因测序,在80个分离株中,有57个产生了独特的物种鉴定(≥99%的序列相似性)。在该阈值下还有11个分离株给出了模糊的结果,仅被鉴定为属水平。鉴定出10个分离株至属水平(≥97%相似性)。且两个分离株的相似性值低于此阈值,被视为未鉴定,并排除在进一步分析之外。 MALDI-TOF MS与参考方法的结果一致,鉴定出其中包括78种分离株中的67种(占85.9%)。 9个被误认,2个被误认。当使用三种不同的质谱仪和四种不同的培养基时,随机选择的10个菌株的身份是100%正确的。因此,基于MALDI-TOF MS的非发酵细菌物种鉴定可在10分钟内提供准确且可重现的结果,而无需消耗大量的消耗品。

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