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Rapid Antifungal Susceptibility Testing by Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry Analysis

机译:基质辅助激光解吸电离的快速抗真菌药敏试验-飞行时间质谱分析

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摘要

The widespread use of antifungal agents, which is likely to expand with their enhanced availability, has promoted the emergence of drug-resistant strains. Antifungal susceptibility testing (AFST) is now an essential procedure for guiding appropriate antifungal therapy. Recently, we developed a matrix-assisted laser desorption ionization–time of flight mass spectrometry (MALDI-TOF MS)-based method that enables the detection of fungal isolates with reduced echinocandin susceptibility, relying on the proteome changes that are detectable after a 15-h exposure of fungal cells to serial drug concentrations. Here, we describe a simplified version of this approach that facilitates discrimination of the susceptible and resistant isolates of Candida albicans after a 3-h incubation in the presence of “breakpoint” level drug concentrations of the echinocandin caspofungin (CSF). Spectra at concentrations of 0 (null), 0.03 (intermediate), and 32 (maximal) μg/ml of CSF were used to create individual composite correlation index (CCI) matrices for 65 C. albicans isolates, including 13 fks1 mutants. Isolates are then classified as susceptible or resistant to CSF if the CCI values of spectra at 0.03 and 32 μg/ml are higher or lower, respectively, than the CCI values of spectra at 0.03 and 0 μg/ml. In this way, the drug resistance of C. albicans isolates to echinocandin antifungals can be quickly assessed. Furthermore, the isolate categorizations determined using MALDI-TOF MS-based AFST (ms-AFST) were consistent with the wild-type and mutant FKS1 genotypes and the AFST reference methodology. The ms-AFST approach may provide a rapid and reliable means of detecting emerging antifungal resistance and accelerating the initiation of appropriate antifungal treatment.
机译:抗真菌剂的广泛使用可能会随着其可用性的提高而扩大,从而促进了耐药菌株的出现。现在,抗真菌药敏试验(AFST)是指导适当的抗真菌治疗的重要程序。最近,我们开发了一种基于基质辅助的激光解吸电离飞行时间质谱(MALDI-TOF MS)的方法,该方法能够检测棘手菌素敏感性降低的真菌分离株,并依赖于15- h真菌细胞暴露于系列药物浓度。在这里,我们描述了此方法的简化版本,该方法有助于在棘突菌素卡泊芬净(CSF)达到“临界点”水平药物浓度的情况下进行3小时孵育后,对白色念珠菌易感和耐药菌株进行区分。使用浓度为0(零),0.03(中间)和32(最大)μg/ ml CSF的光谱来创建65个白色念珠菌分离株(包括13个fks1突变体)的单独复合相关指数(CCI)矩阵。如果在0.03和32μg/ ml处的光谱的CCI值分别比在0.03和0μg/ ml处的光谱的CCI值高或低,则将分离株分类为对CSF敏感或抗CSF。这样,可以快速评估白色念珠菌分离株对棘皮菌素抗真菌药的耐药性。此外,使用基于MALDI-TOF MS的AFST(ms-AFST)确定的分离株分类与野生型和突变FKS1基因型以及AFST参考方法一致。 ms-AFST方法可以提供一种快速可靠的手段来检测新出现的抗真菌药耐药性,并加快适当抗真菌药治疗的启动。

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