首页> 外文期刊>Annals of Clinical Microbiology and Antimicrobials >Evaluation of Rapid Sepsityper? protocol and specific MBT-Sepsityper module (Bruker Daltonics) for the rapid diagnosis of bacteremia and fungemia by MALDI-TOF-MS
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Evaluation of Rapid Sepsityper? protocol and specific MBT-Sepsityper module (Bruker Daltonics) for the rapid diagnosis of bacteremia and fungemia by MALDI-TOF-MS

机译:评估快速脓肿率?协议和特定的MBT-SEPSITYPER模块(BRUKER DALTONICS),用于快速诊断MALDI-TOF-MS的菌血症和血肿

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During bloodstream infections, rapid adaptation of empirical treatment according to the microorganism identified is essential to decrease mortality. The aim of the present study was to assess the microbiological performances of a new rapid version of the Sepsityper? kit (Bruker Daltonics) allowing identification of bacteria and yeast by MALDI-TOF mass spectrometry directly from positive blood cultures in 10?min and of the specific MBT-Sepsityper module for spectra analysis, designed to increase identification performance. Identification rates were determined prospectively on 350 bacterial and 29 fungal positive blood cultures, and compared to conventional diagnostic method. Our rapid diagnosis strategy (Rapid Sepsityper? protocol: one spot with and one without formic acid extraction step) combined to MBT-Sepsityper module provided 65.4%, 78.9% and 62% reliable identification to the species level of monomicrobial positive blood cultures growing respectively Gram-positive, Gram-negative bacteria or yeast. Importantly, identification rates of Gram-positive bacteria were higher in anaerobic than in aerobic bottles (77.8% vs 22.2%; p?=?0.004), if formic acid extraction step was performed (60.8% vs 39.2%; p?=?1.8e?6) and if specific MBT-Sepsityper module was used (76.2% vs 61.9%, p?=?0.041) while no significant differences were observed for Gram-negative bacteria. For yeasts identification, formic acid extraction step improved rapid identification rate by 37.9% while the specific MBT-Sepsityper module increased overall performances by 38%, providing up to 89.7% reliable identification if associated with the standard Sepsityper? protocol. These performances, associated with a reduce turnaround time, may help to implement a rapid identification strategy of bloodstream infections in the routine workflow of microbiology laboratories.
机译:在血液感染,根据鉴别的微生物经验性治疗快速适应是必须降低死亡率。本研究的目的是评估的Sepsityper的一个新的快速版本的微生物的表演?试剂盒(布鲁克道尔顿)允许10?分钟和特定MBT-Sepsityper模块,用于光谱分析,旨在提高识别性能的细菌鉴定和酵母通过直接MALDI-TOF质谱法从阳性血液培养物。识别率350个上细菌和真菌29阳性血培养前瞻性测定物,和相对于传统的诊断方法。我们的快速诊断策略(快速Sepsityper协议:一个点与和一个没有甲酸提取步骤)合并,MBT-Sepsityper模块提供65.4%,78.9%和62%的可靠标识monomicrobial血培养阳性的分别生长的革兰氏物种水平阳性,革兰氏阴性细菌或酵母。重要的是,革兰氏阳性菌的识别率(相对于22.2%77.8%; P = 0.004?)均在厌氧比需氧瓶更高,如果执行甲酸提取步骤(60.8%对39.2%,P = 1.8? E'6),并且如果使用特定MBT-Sepsityper模块(76.2%对61.9%,p =?0.041),而观察到对革兰氏阴性菌无显著差异。对于酵母识别,甲酸提取步骤由37.9%提高快速识别率而比MBT-Sepsityper模块由38%提高整体性能,如果与标准相关联的Sepsityper提供高达89.7%可靠的鉴定?协议。这些表演,以减少周转时间相关的,可能有助于实现微生物实验室的日常工作流程血液感染的快速识别策略。

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