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首页> 外文期刊>Infection and Drug Resistance >Performance of VITEK mass spectrometry V3.0 for rapid identification of clinical Aspergillus fumigatus in different culture conditions based on ribosomal proteins
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Performance of VITEK mass spectrometry V3.0 for rapid identification of clinical Aspergillus fumigatus in different culture conditions based on ribosomal proteins

机译:VITEK质谱V3.0在基于核糖体蛋白的不同培养条件下快速鉴定临床烟曲霉的性能

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Fast and accurate discrimination of Aspergillus fumigatus is significant, since misidentification may lead to inappropriate clinical therapy. This study assessed VITEK mass spectrometry (MS) V3.0 for A. fumigatus identification using extracted fungal ribosomal proteins. A total of 52 isolates preliminarily identified as A. fumigatus by traditional morphological methods were inoculated in three different culture media and cultured at two different temperatures. The specific spectral fingerprints of different culture time points (48, 72, 96, and 120?h) were obtained. Of all strains, 88.5% (46/52) were discriminated as A. fumigatus , while the remaining 11.5% (6/52) produced results inconsistent with morphological analysis. Molecular sequencing, as a reference method for species identification, was used to validate the morphological analysis and matrix-assisted laser desorption/ionization time of flight MS. Chi-square tests ( Χ 2 test, P =0.05) demonstrated that the culture medium and incubation temperature had no effects on identification accuracy; however, identification accuracy of the strains in the 48-h group was lower than that in other groups. In addition, we found that ribosomal proteins extracted from A. fumigatus can be stored in different environments for at least 1?week, with their profiles remaining stable and strain identification results showing no change. This is beneficial for medical institutions with no mass spectrometer at hand. Overall, this study showed the powerful ability of VITEK MS V 3.0 in identifying A. fumigatus .
机译:快速准确地识别烟曲霉非常重要,因为错误识别可能会导致不合适的临床治疗。这项研究使用提取的真菌核糖体蛋白评估了VITEK质谱(MS)V3.0对烟曲霉的鉴定。通过传统的形态学方法,将总共52个初步鉴定为烟曲霉的分离株接种在三种不同的培养基中,并在两种不同的温度下进行培养。获得了不同培养时间点(48、72、96和120?h)的特定光谱指纹。在所有菌株中,有88.5%(46/52)被识别为烟曲霉,而其余的11.5%(6/52)产生的结果与形态分析不一致。分子测序作为物种鉴定的参考方法,用于验证形态分析和基质辅助激光解吸/电离飞行时间MS。卡方检验(X 2 检验,P = 0.05)表明培养基和培养温度对鉴定准确性没有影响。然而,在48 h组中,菌株的鉴定准确性低于其他组。另外,我们发现从烟曲霉提取的核糖体蛋白可以在不同的环境中保存至少1周,其分布保持稳定,菌株鉴定结果没有变化。这对于没有质谱仪的医疗机构是有益的。总的来说,这项研究表明,VITEK MS V 3.0具有强大的识别烟曲霉的能力。

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