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一种使用自适应聚焦声学技术的快速、标准化蛋白质提取方法,用于通过基质辅助激光解吸电离飞行时间质谱法鉴定分枝杆菌。

A rapid, standardized protein extraction method using adaptive focused acoustics for identification of mycobacteria by MALDI-ToF MS.

作者信息

Adams La'Tonzia L, Dionne Kim, Fisher Stephanie, Parrish Nicole

机构信息

Department of Pathology, Division of Medical Microbiology, The Johns Hopkins Medical Institutions, Baltimore, MD, USA.

Department of Pathology, Division of Medical Microbiology, The Johns Hopkins Medical Institutions, Baltimore, MD, USA.

出版信息

Diagn Microbiol Infect Dis. 2016 Nov;86(3):284-288. doi: 10.1016/j.diagmicrobio.2016.06.001. Epub 2016 Jun 11.

Abstract

Mycobacterial identification using MALDI-ToF MS (MALDI) has been hindered by inadequate extraction methods. Adaptive Focused Acoustics™ uses concentrated ultrasonic energy to achieve cellular disruption. Using this technology, we developed a rapid mycobacterial inactivation/protein extraction method for MALDI-based identification. Agreement for identification to the species level versus conventional identification was stratified by log confidence cut-offs of ≥2.0, ≥ 1.8, or ≥1.7. A total of 182 mycobacterial isolates were tested. Complete inactivation of all species/strains was achieved after 2min. Using a log confidence cut-off of ≥2.0, overall agreement for the commercial method (CM) was 41.7% versus 66.7% for the novel method (NM). For the CM, agreement increased to 66.7% and 83.3% using log confidence cut-offs of ≥1.8 and ≥1.7, respectively; for the NM, agreement was 100% for both cut-offs with all isolates. With no alteration to the existing database, overall agreement for the NM was 83.4%, largely due to low scores for clinical isolates of M. chelonae and M. mucogenicum. Addition of spectra from a single clinical strain of each species to the existing database increased overall agreement to 93.1%.

摘要

使用基质辅助激光解吸电离飞行时间质谱(MALDI)进行分枝杆菌鉴定一直受到提取方法不完善的阻碍。自适应聚焦声学技术™利用集中的超声能量实现细胞破碎。利用这项技术,我们开发了一种基于MALDI的快速分枝杆菌灭活/蛋白质提取方法用于鉴定。与传统鉴定相比,物种水平鉴定的一致性按照≥2.0、≥1.8或≥1.7的对数置信度临界值进行分层。总共测试了182株分枝杆菌分离株。2分钟后所有物种/菌株均实现完全灭活。使用≥2.0的对数置信度临界值时,商业方法(CM)的总体一致性为41.7%,而新方法(NM)为66.7%。对于CM,使用≥1.8和≥1.7的对数置信度临界值时,一致性分别提高到66.7%和83.3%;对于NM,两种临界值下所有分离株的一致性均为100%。在不改变现有数据库的情况下,NM的总体一致性为83.4%,这主要是由于龟分枝杆菌和产黏液分枝杆菌临床分离株的得分较低。将每个物种的单个临床菌株的光谱添加到现有数据库中后,总体一致性提高到93.1%。

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