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采用基质辅助激光解吸电离飞行时间质谱法直接表面分析鉴定曲霉属、镰刀菌属和毛霉目。

Species identification of Aspergillus, Fusarium and Mucorales with direct surface analysis by matrix-assisted laser desorption ionization time-of-flight mass spectrometry.

机构信息

Institute of Microbiology, Università Cattolica del Sacro Cuore, Largo F. Vito 1, Rome, Italy.

出版信息

Clin Microbiol Infect. 2012 May;18(5):475-84. doi: 10.1111/j.1469-0691.2011.03599.x. Epub 2011 Aug 29.

Abstract

Accurate species discrimination of filamentous fungi is essential, because some species have specific antifungal susceptibility patterns, and misidentification may result in inappropriate therapy. We evaluated matrix-assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) for species identification through direct surface analysis of the fungal culture. By use of culture collection strains representing 55 species of Aspergillus, Fusarium and Mucorales, a reference database was established for MALDI-TOF MS-based species identification according to the manufacturer's recommendations for microflex measurements and MALDI BioTyper 2.0 software. The profiles of young and mature colonies were analysed for each of the reference strains, and species-specific spectral fingerprints were obtained. To evaluate the database, 103 blind-coded fungal isolates collected in the routine clinical microbiology laboratory were tested. As a reference method for species designation, multilocus sequencing was used. Eighty-five isolates were unequivocally identified to the species level (≥99% sequence similarity); 18 isolates producing ambiguous results at this threshold were initially rated as identified to the genus level only. Further molecular analysis definitively assigned these isolates to the species Aspergillus oryzae (17 isolates) and Aspergillus flavus (one isolate), concordant with the MALDI-TOF MS results. Excluding nine isolates that belong to the fungal species not included in our reference database, 91 (96.8%) of 94 isolates were identified by MALDI-TOF MS to the species level, in agreement with the results of the reference method; three isolates were identified to the genus level. In conclusion, MALDI-TOF MS is suitable for the routine identification of filamentous fungi in a medical microbiology laboratory.

摘要

准确鉴定丝状真菌至关重要,因为某些菌种具有特定的抗真菌药敏模式,错误鉴定可能导致不适当的治疗。我们评估了基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)通过直接对真菌培养物进行表面分析进行物种鉴定的能力。使用代表曲霉属、镰孢菌属和毛霉目 55 个种的培养物集菌株,根据制造商对微 Flex 测量和 MALDI BioTyper 2.0 软件的建议,建立了 MALDI-TOF MS 基于物种鉴定的参考数据库。分析了每个参考菌株的幼龄和成熟菌落的图谱,并获得了菌种特异性的光谱指纹。为了评估数据库,对常规临床微生物学实验室收集的 103 个盲样真菌分离物进行了测试。作为菌种指定的参考方法,使用了多位点测序。85 个分离物被明确鉴定为种水平(≥99%序列相似性);18 个在该阈值下产生不确定结果的分离物最初仅被评为属水平鉴定。进一步的分子分析明确将这些分离物归类为曲霉属(17 个分离物)和黄曲霉(1 个分离物),与 MALDI-TOF MS 结果一致。排除属于我们参考数据库中未包含的真菌种的 9 个分离物,94 个分离物中有 91 个(96.8%)通过 MALDI-TOF MS 鉴定为种水平,与参考方法的结果一致;3 个分离物鉴定为属水平。总之,MALDI-TOF MS 适用于医学微生物学实验室中丝状真菌的常规鉴定。

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