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Rapid Identification and Susceptibility Testing of Candida spp. from Positive Blood Cultures by Combination of Direct MALDI-TOF Mass Spectrometry and Direct Inoculation of Vitek 2

机译:念珠菌的快速鉴定和药敏试验。直接MALDI-TOF质谱法和直接接种Vitek 2的组合从阳性血液培养物中分离

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摘要

Fungaemia is associated with high mortality rates and early appropriate antifungal therapy is essential for patient management. However, classical diagnostic workflow takes up to several days due to the slow growth of yeasts. Therefore, an approach for direct species identification and direct antifungal susceptibility testing (AFST) without prior time-consuming sub-culturing of yeasts from positive blood cultures (BCs) is urgently needed. Yeast cell pellets prepared using Sepsityper kit were used for direct identification by MALDI-TOF mass spectrometry (MS) and for direct inoculation of Vitek 2 AST-YS07 card for AFST. For comparison, MALDI-TOF MS and Vitek 2 testing were performed from yeast subculture. A total of twenty four positive BCs including twelve C. glabrata, nine C. albicans, two C. dubliniensis and one C. krusei isolate were processed. Applying modified thresholds for species identification (score ≥1.5 with two identical consecutive propositions), 62.5% of BCs were identified by direct MALDI-TOF MS. AFST results were generated for 72.7% of BCs directly tested by Vitek 2 and for 100% of standardized suspensions from 24 h cultures. Thus, AFST comparison was possible for 70 isolate-antifungal combinations. Essential agreement (minimum inhibitory concentration difference ≤1 double dilution step) was 88.6%. Very major errors (VMEs) (false-susceptibility), major errors (false-resistance) and minor errors (false categorization involving intermediate result) amounted to 33.3% (of resistant isolates), 1.9% (of susceptible isolates) and 1.4% providing 90.0% categorical agreement. All VMEs were due to fluconazole or voriconazole. This direct method saved on average 23.5 h for identification and 15.1 h for AFST, compared to routine procedures. However, performance for azole susceptibility testing was suboptimal and testing from subculture remains indispensable to validate the direct finding.
机译:真菌血症与高死亡率相关,因此早期进行适当的抗真菌治疗对于患者的治疗至关重要。但是,由于酵母生长缓慢,传统的诊断工作流程最多需要几天的时间。因此,迫切需要一种直接的物种鉴定和直接的抗真菌药敏试验(AFST)的方法,而无需事先耗时的从阳性血液培养物(BCs)中培养酵母的亚培养。使用Sepsityper试剂盒制备的酵母细胞沉淀物可通过MALDI-TOF质谱(MS)直接鉴定,并可直接接种用于AFST的Vitek 2 AST-YS07卡。为了比较,从酵母亚培养物中进行了MALDI-TOF MS和Vitek 2测试。总共处理了二十四个阳性BC,包括十二个glabrata C.,九个C. albicans,两个C. dubliniensis和一个C. krusei分离株。应用修改后的阈值进行物种鉴定(分数≥1.5,具有两个相同的连续命题),通过直接MALDI-TOF MS鉴定了62.5%的BC。通过Vitek 2直接测试的72.7%的BC和来自24 h培养物的100%的标准悬浮液均产生AFST结果。因此,对于70种分离物-抗真菌药组合,AFST比较是可能的。基本一致性(最小抑菌浓度差≤1倍稀释倍数)为88.6%。极重大错误(VME)(错误敏感性),重大错误(错误抗性)和次要错误(涉及中间结果的错误分类)分别为(耐药菌株)33.3%,(易感菌株)1.9%和1.4% 90.0%的绝对一致性。所有VME均归因于氟康唑或伏立康唑。与常规程序相比,这种直接方法平均可节省23.5 h的识别时间和15.1 h的AFST时间。但是,唑敏感性测试的性能欠佳,继发培养的测试对于验证直接发现仍然必不可少。

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