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基质辅助激光解吸/电离飞行时间质谱法:协议标准化、比较和数据库扩展,以更快、更可靠地鉴定皮肤癣菌。

Matrix-assisted laser desorption/ionisation-time of flight mass spectrometry: Protocol standardisation, comparison and database expansion for faster and reliable identification of dermatophytes.

机构信息

Department of Medical Microbiology, Postgraduate Institute of Medical Education and Research, Chandigarh, India.

Department of Dermatology, Venereology, and Leprology, Postgraduate Institute of Medical Education and Research, Chandigarh, India.

出版信息

Mycoses. 2021 Aug;64(8):926-935. doi: 10.1111/myc.13285. Epub 2021 Apr 25.

Abstract

BACKGROUND

Accurate and early identification of dermatophytes enables prompt antifungal therapy. However, phenotypic and molecular identification methods are time-consuming. MALDI-TOF MS-based identification is rapid, but an optimum protocol is not available.

OBJECTIVES

To develop and validate an optimum protein extraction protocol for the efficient and accurate identification of dermatophytes by MALDI-TOF MS.

MATERIALS/METHODS: Trichophyton mentagrophytes complex (n = 4), T. rubrum (n = 4) and Microsporum gypseum (n = 4) were used for the optimisation of protein extraction protocols. Thirteen different methods were evaluated. A total of 125 DNA sequence confirmed clinical isolates of dermatophytes were used to create and expand the existing database. The accuracy of the created database was checked by visual inspection of MALDI spectra, MSP dendrogram and composite correlation index matrix analysis. The protocol was validated further using 234 isolates.

RESULT

Among 13 protein extraction methods, six correctly identified dermatophytes but with a low log score (≤1.0). The modified extraction protocol developed provided an elevated log score of 1.6. Significant log score difference was observed between the modified protocol and other existing protocols (T. mentagrophytes complex: 1.6 vs. 0.2-1.0, p < .001; T. rubrum: 1.6 vs. 0.4-1.0, p < .001; M. gypseum:1.6 vs. 0.2-1.0, p < .001). Expansion of the database enabled the identification of all 234 isolates (73.5% with log score ≥2.0 and 26.4% with log scores range: 1.75-1.99). The results were comparable to DNA sequence-based identification.

CONCLUSION

MALDI-TOF MS with an updated database and efficient protein extraction protocol developed in this study can identify dermatophytes accurately and also reduce the time for identifying them.

摘要

背景

准确和早期鉴定皮肤癣菌可实现及时的抗真菌治疗。然而,表型和分子鉴定方法耗时。MALDI-TOF MS 基于鉴定快速,但不存在最佳方案。

目的

开发和验证一种最佳蛋白质提取方案,以通过 MALDI-TOF MS 实现皮肤癣菌的高效和准确鉴定。

材料/方法:使用 Trichophyton mentagrophytes 复合体(n = 4)、T. rubrum(n = 4)和 Microsporum gypseum(n = 4)优化蛋白质提取方案。评估了 13 种不同的方法。使用 125 种 DNA 序列确认的临床皮肤癣菌分离株创建和扩展现有数据库。通过目视检查 MALDI 光谱、MSP 树状图和综合相关指数矩阵分析来检查创建数据库的准确性。进一步使用 234 株分离株验证该方案。

结果

在 13 种蛋白质提取方法中,有 6 种方法可以正确鉴定皮肤癣菌,但 log 评分较低(≤1.0)。开发的改良提取方案提供了 1.6 的提高 log 评分。改良方案与其他现有方案之间存在显著的 log 评分差异(T. mentagrophytes 复合体:1.6 与 0.2-1.0,p <.001;T. rubrum:1.6 与 0.4-1.0,p <.001;M. gypseum:1.6 与 0.2-1.0,p <.001)。数据库的扩展使所有 234 株分离物的鉴定成为可能(73.5%的 log 评分≥2.0,26.4%的 log 评分范围:1.75-1.99)。结果与 DNA 序列鉴定相当。

结论

本研究中开发的更新数据库和高效蛋白质提取方案的 MALDI-TOF MS 可以准确识别皮肤癣菌,并且还可以缩短鉴定时间。

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