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Increased species-assignment of filamentous fungi using MALDI-TOF MS coupled with a simplified sample processing and an in-house library

机译:使用MALDI-TOF MS与简化的样品加工和内部图书馆联合使用MALDI-TOF MS增加丝状真菌的物种分配

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In this study we evaluated the capacity of MALDI-TOF MS (Bruker Daltonics, Bremen, Germany) to identify clinical mould isolates. We focused on two aspects of MALDI-TOF MS identification: the sample processing and the database. Direct smearing of the sample was compared with a simplified processing consisting of mechanical lysis of the moulds followed by a protein extraction step. Both methods were applied to all isolates and the Filamentous Fungi Library 1.0 (Bruker Daltonics) was used for their identification. This approach allowed the correct species-level identification of 25/34 Fusarium spp. and 10/10 Mucor circinelloides isolates using the simplified sample processing. In addition, 7/34 Fusarium spp. and 1/21 Pseudallescheria/Scedosporium spp. isolates were correctly identified at the genus level. The remaining isolates-60-could not be identified using the commercial database, mainly because of the low number of references for some species and the absence of others. Thus, an in-house library was built with 63 local isolates previously characterized using DNA sequence analysis. Its implementation allowed the accurate identification at the species level of 94 isolates (91.3%) and the remaining nine isolates (8.7%) were correctly identified at the genus level. No misidentifications at genus level were detected. In conclusion, with improvements of both the sample preparation and the feeding of the database, MALDI-TOF MS is a reliable, ready to use method to identify moulds of clinical origin in an accurate, rapid, and cost-effective manner.
机译:在这项研究中,我们评估了MALDI-TOF MS(BRUKER DALTONICS,BREMEN,GERMAL)的能力来识别临床模具分离株。我们专注于MALDI-TOF MS识别的两个方面:采样处理和数据库。将样品的直接涂抹与模具的机械裂解组成的简化处理,然后是蛋白质提取步骤。将两种方法应用于所有分离物,并且丝状真菌库1.0(Bruker Daltonics)用于其鉴定。这种方法允许正确的25/34镰刀菌的物种级别鉴定。和10/10粘膜环肽使用简化的样品加工分离。此外,7/34镰刀菌SPP。和1/21假孢子蛋白/ scedosporium spp。在属级别正确鉴定分离物。剩余的分离算线-60-无法使用商业数据库识别,主要是因为对某些物种的引用数量和缺乏别的。因此,使用DNA序列分析以先前表征的63个局部分离物构建内部库。其实施允许在94个分离物的物种水平(91.3%)的物种水平上的精确鉴定,并且在属级别正确鉴定剩余的九分离物(8.7%)。未检测到属级别的误识别。总之,随着样品制备和数据库的饲养,MALDI-TOF MS是可靠的,准备使用方法以准确,快速,经济高效的方式识别临床起源模具。

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