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用于丝状真菌鉴定的Vitek Ms系统评估

Evaluation of the Vitek Ms system for the identification of filamentous fungi.

作者信息

Zvezdánova Margarita Estreya, Escribano Pilar, Guinea Jesús, Muñoz Patricia, Rodríguez-Temporal David, Rodríguez-Sánchez Belén

机构信息

Clinical Microbiology and Infectious Diseases Department, Hospital General Universitario Gregorio Marañón, Madrid 28007, Spain.

Instituto de Investigación Sanitaria Gregorio Marañón -IiSGM-, Madrid 28007, Spain.

出版信息

Med Mycol. 2022 Apr 27;60(4). doi: 10.1093/mmy/myac027.

Abstract

UNLABELLED

The implementation of matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) for the identification of fungal isolates remains challenging and has been limited to experienced laboratories in sample preparation and in-house libraries construction. However, the development of commercial kits for standardized fungal sample preparation and updated reference libraries can fill this gap. This study aimed to evaluate the performance of the commercial VITEK MS Mould Kit (bioMérieux, Marcy l'Etoile, France) and the VITEK MS system (bioMérieux) for identification using a panel of fungal species of clinical interest. Overall, 200 isolates belonging to 13 genera and 43 fungal species were analyzed with the VITEK MS system equipped with the v3.2 IVD database. Overall, 89.0% of the isolates were correctly identified, 41.5 and 43.5% at species and complex level, respectively. For an additional 4.0% of the identifications, correlation at the genus level was reported. The remaining 21 isolates (10.5%) could not be identified among which 85.0% (18/21) were species not claimed in the database. One Syncephalastrum isolate was misidentified as Rhizopus microsporus complex. Specifically, 100% of the Scedosporium/Lomentospora, 97.1% of the Fusarium, 65.7% of the Mucorales and 86.4% of the Aspergillus isolates were correctly identified at the species and complex level. The methodology described allows for an easy implementation of MALDI-TOF MS for routine identification of fungal species in a fast and reliable manner. Although further improvement in the databases is still required, an important number of fungal species can be correctly identified at the species level using this method.

LAY SUMMARY

The use of MALDI-TOF for fungal identification remains a challenge. In this study, using a commercial protein extraction kit and updated database, VITEK MS system was able to identify up to 89.0% of a diverse collection of 200 filamentous fungi representing 43 fungal species.

摘要

未标注

采用基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)鉴定真菌分离株仍具有挑战性,且仅限于经验丰富的实验室进行样本制备和构建内部文库。然而,用于标准化真菌样本制备的商业试剂盒和更新的参考文库的开发可以填补这一空白。本研究旨在使用一组具有临床意义的真菌物种评估商业VITEK MS霉菌试剂盒(法国生物梅里埃公司,马西耶图瓦勒)和VITEK MS系统(生物梅里埃公司)的鉴定性能。总体而言,使用配备v3.2体外诊断数据库的VITEK MS系统对属于13个属和43个真菌物种的200株分离株进行了分析。总体而言,89.0%的分离株被正确鉴定,在种水平和复合群水平分别为41.5%和43.5%。另有4.0%的鉴定结果报告在属水平具有相关性。其余21株分离株(10.5%)无法鉴定,其中85.0%(18/21)是数据库中未收录的物种。一株共头霉属分离株被误鉴定为微小根霉复合群。具体而言,100%的赛多孢属/洛蒙孢属、97.1%的镰刀菌属、65.7%的毛霉目和86.4%的曲霉属分离株在种水平和复合群水平被正确鉴定。所描述的方法允许以快速可靠的方式轻松实施MALDI-TOF MS用于真菌物种的常规鉴定。尽管数据库仍需进一步改进,但使用该方法可以在种水平正确鉴定大量真菌物种。

简要总结

使用MALDI-TOF进行真菌鉴定仍然是一项挑战。在本研究中,使用商业蛋白质提取试剂盒和更新的数据库,VITEK MS系统能够鉴定多达89.0%的200株丝状真菌的多样集合,这些真菌代表43个真菌物种。

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