首页> 外文期刊>Journal of Clinical Microbiology >Interlaboratory Comparison of Sample Preparation Methods, Database Expansions, and Cutoff Values for Identification of Yeasts by Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry Using a Yeast Test Panel
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Interlaboratory Comparison of Sample Preparation Methods, Database Expansions, and Cutoff Values for Identification of Yeasts by Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry Using a Yeast Test Panel

机译:实验室间样品比较方法,数据库扩展和临界值的实验室间比较,用于通过酵母辅助面板进行基质辅助激光解吸电离-飞行时间质谱法鉴定酵母

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An interlaboratory study using matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS) to determine the identification of clinically important yeasts (n = 35) was performed at 11 clinical centers, one company, and one reference center using the Bruker Daltonics MALDI Biotyper system. The optimal cutoff for the MALDI-TOF MS score was investigated using receiver operating characteristic (ROC) curve analyses. The percentages of correct identifications were compared for different sample preparation methods and different databases. Logistic regression analysis was performed to analyze the association between the number of spectra in the database and the percentage of strains that were correctly identified. A total of 5,460 MALDI-TOF MS results were obtained. Using all results, the area under the ROC curve was 0.95 (95% confidence interval [CI], 0.94 to 0.96). With a sensitivity of 0.84 and a specificity of 0.97, a cutoff value of 1.7 was considered optimal. The overall percentage of correct identifications (formic acid-ethanol extraction method, score ≥ 1.7) was 61.5% when the commercial Bruker Daltonics database (BDAL) was used, and it increased to 86.8% by using an extended BDAL supplemented with a Centraalbureau voor Schimmelcultures (CBS)-KNAW Fungal Biodiversity Centre in-house database (BDAL+CBS in-house). A greater number of main spectra (MSP) in the database was associated with a higher percentage of correct identifications (odds ratio [OR], 1.10; 95% CI, 1.05 to 1.15; P < 0.01). The results from the direct transfer method ranged from 0% to 82.9% correct identifications, with the results of the top four centers ranging from 71.4% to 82.9% correct identifications. This study supports the use of a cutoff value of 1.7 for the identification of yeasts using MALDI-TOF MS. The inclusion of enough isolates of the same species in the database can enhance the proportion of correctly identified strains. Further optimization of the preparation methods, especially of the direct transfer method, may contribute to improved diagnosis of yeast-related infections.
机译:在11个临床中心进行了一项实验室间研究,该研究使用基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)确定对临床上重要的酵母菌( n = 35)的鉴定。公司,以及一个使用Bruker Daltonics MALDI Biotyper系统的参考中心。使用接收器工作特性(ROC)曲线分析研究了MALDI-TOF MS评分的最佳截止值。比较了不同样品制备方法和不同数据库的正确识别百分比。进行逻辑回归分析以分析数据库中的光谱数与正确识别的菌株百分比之间的关联。总共获得了5,460个MALDI-TOF MS结果。使用所有结果,ROC曲线下的面积为0.95(95%置信区间[CI]为0.94至0.96)。灵敏度为0.84,特异性为0.97,认为1.7的临界值为最佳。当使用商业布鲁克·道尔顿公司的数据库(BDAL)时,正确识别的总百分比(甲酸-乙醇提取方法,得分≥1.7)为61.5%,并且通过使用扩展的BDAL并补充了森特布鲁分部的Schimmelcultures,将其正确识别率提高到86.8%。 (CBS)-KNAW真菌生物多样性中心内部数据库(BDAL + CBS内部数据库)。数据库中更多的主光谱(MSP)与更高的正确识别率相关(赔率[OR]为1.10; 95%CI为1.05至1.15; P <0.01)。直接转移方法的结果在0%至82.9%的正确识别范围内,前四个中心的结果在71.4%至82.9%的正确识别范围内。这项研究支持使用截止值1.7使用MALDI-TOF MS鉴定酵母。在数据库中包含足够多的相同物种的分离株可以提高正确鉴定出的菌株的比例。制备方法,特别是直接转移方法的进一步优化,可能有助于改善酵母相关感染的诊断。

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