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首页> 外文期刊>Journal of Clinical Microbiology >Multicenter Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry Study for Identification of Clinically Relevant Nocardia spp.
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Multicenter Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry Study for Identification of Clinically Relevant Nocardia spp.

机译:多中心基质辅助激光解吸电离-飞行时间质谱研究,用于鉴定临床上相关的诺卡氏菌。

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This multicenter study analyzed Nocardia spp., including extraction, spectral acquisition, Bruker matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) identification, and score interpretation, using three Nocardia libraries, the Bruker, National Institutes of Health (NIH), and The Ohio State University (OSU) libraries, and compared the results obtained by each center. A standardized study protocol, 150 Nocardia isolates, and NIH and OSU Nocardia MALDI-TOF MS libraries were distributed to three centers. Following standardized culture, extraction, and MALDI-TOF MS analysis, isolates were identified using score cutoffs of ≥2.0 for species/species complex-level identification and ≥1.8 for genus-level identification. Isolates yielding a score of <2.0 underwent a single repeat extraction and analysis. The overall score range for all centers was 1.3 to 2.7 (average, 2.2 ± 0.3), with common species generally producing higher average scores than less common ones. Score categorization and isolate identification demonstrated 86% agreement between centers; 118 of 150 isolates were correctly identified to the species/species complex level by all centers. Nine strains (6.0%) were not identified by any center, and six (4.0%) of these were uncommon species with limited library representation. A categorical score discrepancy among centers occurred for 21 isolates (14.0%). There was an overall benefit of 21.2% from repeat extraction of low-scoring isolates and a center-dependent benefit for duplicate spotting (range, 2 to 8.7%). Finally, supplementation of the Bruker Nocardia MALDI-TOF MS library with both the OSU and NIH libraries increased the genus-level and species-level identification by 18.2% and 36.9%, respectively. Overall, this study demonstrates the ability of diverse clinical microbiology laboratories to utilize MALDI-TOF MS for the rapid identification of clinically relevant Nocardia spp. and to implement MALDI-TOF MS libraries developed by single laboratories across institutions.
机译:这项多中心研究使用三个诺卡迪亚图书馆,布鲁克,美国国立科学研究院(National Institutes of Nationality)进行了分析,包括提取,光谱采集,布鲁克基质辅助激光解吸电离-飞行时间质谱(MALDI-TOF MS)鉴定和分数解释。卫生(NIH)和俄亥俄州立大学(OSU)库,并比较了每个中心获得的结果。将一个标准化的研究方案,150个诺卡氏菌分离株以及NIH和OSU诺卡氏菌MALDI-TOF MS库分配给了三个中心。经过标准化的培养,提取和MALDI-TOF MS分析后,使用≥2.0的物种/物种复杂水平鉴定和≥1.8的属水平鉴定的分界值来鉴定分离株。单次重复提取和分析产生分数<2.0的分离株。所有中心的总体得分范围是1.3到2.7(平均2.2±0.3),与普通物种相比,普通物种通常产生更高的平均得分。分数分类和隔离鉴定表明中心之间的一致性为86%;所有中心已正确识别出150种分离物中的118种,达到了物种/物种复杂水平。九个菌株(6.0%)未被任何中心鉴定,其中六个(4.0%)是罕见的物种,其文库代表性有限。中心之间的分类得分差异发生在21个菌株中(14.0%)。重复提取低得分的分离物可带来21.2%的总体收益,重复斑点的中心依赖性收益(2%至8.7%)。最后,用OSU和NIH库补充布鲁克Nocardia MALDI-TOF MS库,分别使属水平和物种水平鉴定增加了18.2%和36.9%。总体而言,这项研究证明了各种临床微生物学实验室利用MALDI-TOF MS快速鉴定临床相关诺卡氏菌的能力。并实施跨机构的单个实验室开发的MALDI-TOF MS库。

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