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基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)作为鉴定不属于该属的过氧化氢酶阴性革兰氏阳性球菌菌种的可靠工具。

Matrix-assisted Laser Desorption Ionization-Time-of-Flight Mass Spectrometry (MALDI-TOF MS) as a Reliable Tool to Identify Species of Catalase-negative Gram-positive Cocci not Belonging to the Genus.

作者信息

Almuzara Marisa, Barberis Claudia, Velázquez Viviana Rojas, Ramirez Maria Soledad, Famiglietti Angela, Vay Carlos

机构信息

Universidad de Buenos Aires, Facultad de Farmacia y Bioquímica, Laboratorio de Bacteriología, Departamento de Bioquímica Clínica Hospital de Clínicas José de San Martín Ciudad Autónoma de Buenos Aires, Argentina.

Center for Applied Biotechnology Studies, Department of Biological Science, California State University Fullerton, Fullerton, CA, USA.

出版信息

Open Microbiol J. 2016 Dec 28;10:202-208. doi: 10.2174/1874285801610010202. eCollection 2016.

Abstract

OBJECTIVE

To evaluate the performance of matrix-assisted laser desorption ionization-time-of-flight mass spectrometry (MALDI-TOF MS) by using 190 Catalase-negative Gram-Positive Cocci (GPC) clinical isolates.

METHODS

All isolates were identified by conventional phenotypic tests following the proposed scheme by Ruoff and Christensen and MALDI-TOF MS (Bruker Daltonics, BD, Bremen, Germany). Two different extraction methods (direct transfer formic acid method on spot and ethanol formic acid extraction method) and different cut-offs for genus/specie level identification were used. The score cut-offs recommended by the manufacturer (≥ 2.000 for species-level, 1.700 to 1.999 for genus level and <1.700 no reliable identification) and lower cut-off scores (≥1.500 for genus level, ≥ 1.700 for species-level and score <1.500 no reliable identification) were considered for identification. A minimum difference of 10% between the top and next closest score was required for a different genus or species. MALDI-TOF MS identification was considered correct when the result obtained from MS database agreed with the phenotypic identification result. When both methods gave discordant results, the 16S rDNA or genes sequencing was considered as the gold standard identification method. The results obtained by MS concordant with genes sequencing, although discordant with conventional phenotyping, were considered correct. MS results discordant with 16S or A identification were considered incorrect.

RESULTS

Using the score cut-offs recommended by the manufacturer, 97.37% and 81.05% were correctly identified to genus and species level, respectively. On the other hand, using lower cut-off scores for identification, 97.89% and 94.21% isolates were correctly identified to genus and species level respectively by MALDI-TOF MS and no significant differences between the results obtained with two extraction methods were obtained.

CONCLUSION

The results obtained suggest that MALDI-TOF MS has the potential of being an accurate tool for Catalase-negative GPC identification even for those species with difficult diagnosis as , , , among others. Nevertheless, expansion of the library, especially including more strains with different spectra on the same species might overcome potential "intraspecies" variability problems. Moreover, a decrease of the identification scores for species and genus-level identification must be considered since it may improve the MALDI-TOF MS accuracy.

摘要

目的

通过使用190株过氧化氢酶阴性革兰氏阳性球菌(GPC)临床分离株评估基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)的性能。

方法

按照Ruoff和Christensen提出的方案以及MALDI-TOF MS(德国不来梅布鲁克道尔顿公司),通过常规表型试验对所有分离株进行鉴定。使用了两种不同的提取方法(斑点上的直接转移甲酸法和乙醇甲酸提取法)以及不同的属/种水平鉴定临界值。考虑了制造商推荐的分数临界值(物种水平≥2.000,属水平1.700至1.999,<1.700为无可靠鉴定)和较低的临界值分数(属水平≥1.500,物种水平≥1.700,分数<1.500为无可靠鉴定)用于鉴定。对于不同的属或种,最高分数与次高分数之间的最小差异要求为10%。当从MS数据库获得的结果与表型鉴定结果一致时,MALDI-TOF MS鉴定被认为是正确的。当两种方法给出不一致的结果时,16S rDNA或基因测序被视为金标准鉴定方法。MS获得的结果与基因测序一致,尽管与传统表型分析不一致,也被认为是正确的。与16S或A鉴定不一致的MS结果被认为是错误的。

结果

使用制造商推荐的分数临界值时,分别有97.37%和81.05%的分离株被正确鉴定到属和种水平。另一方面,使用较低的临界值分数进行鉴定时,MALDI-TOF MS分别有97.89%和94.21%的分离株被正确鉴定到属和种水平,并且两种提取方法获得的结果之间没有显著差异。

结论

获得的结果表明,MALDI-TOF MS有潜力成为鉴定过氧化氢酶阴性GPC的准确工具, 即使对于那些诊断困难的物种,如 、 、 等。然而,扩大数据库,特别是包括更多同一物种具有不同光谱的菌株,可能会克服潜在的“种内”变异性问题。此外,必须考虑降低物种和属水平鉴定的分数临界值, 因为这可能会提高MALDI-TOF MS的准确性。

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