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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Work flow analysis of around-the-clock processing of blood culture samples and integrated MALDI-TOF mass spectrometry analysis for the diagnosis of bloodstream infections
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Work flow analysis of around-the-clock processing of blood culture samples and integrated MALDI-TOF mass spectrometry analysis for the diagnosis of bloodstream infections

机译:全天候处理血培养样品的工作流程分析和集成的MALDI-TOF质谱分析用于诊断血流感染

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BACKGROUND: Because sepsis has a high mortality rate, rapid microbiological diagnosis is required to enable efficient therapy. The effectiveness of MALDI-TOF mass spectrometry (MALDI-TOF MS) analysis in reducing turnaround times (TATs) for blood culture (BC) pathogen identification when available in a 24-h hospital setting has not been determined. METHODS: On the basis of data from a total number of 912 positive BCs collected within 140 consecutive days and work flow analyses of laboratory diagnostics, we evaluated different models to assess the TATs for batch-wise and for immediate response (real-time) MALDI-TOF MS pathogen identification of positive BC results during the night shifts. The results were compared to TATs from routine BC processing and biochemical identification performed during regular working hours. RESULTS: Continuous BC incubation together with batch-wise MALDI-TOF MS analysis enabled significant reductions of up to 58.7 h in the mean TATs for the reporting of the bacterial species. The TAT of batch-wise MALDI-TOF MS analysis was inferior by a mean of 4.9 h when compared to the model of the immediate work flow under ideal conditions with no constraints in staff availability. CONCLUSIONS: Together with continuous cultivation of BC, the 24-h availability of MALDI-TOF MS can reduce the TAT for microbial pathogen identification within a routine clinical laboratory setting. Batch-wise testing of positive BC loses a few hours compared to real-time identification but is still far superior to classical BC processing. Larger prospective studies are required to evaluate the contribution of rapid aroundthe- clock pathogen identification to medical decisionmaking for septicemic patients.
机译:背景:由于败血症具有很高的死亡率,因此需要快速的微生物学诊断以实现有效的治疗。尚未确定MALDI-TOF质谱(MALDI-TOF MS)分析在减少24小时医院环境中用于血培养(BC)病原体鉴定的周转时间(TAT)中的有效性。方法:基于连续140天内收集的912例阳性BC的总数以及实验室诊断工作流程的分析,我们评估了不同的模型以评估TAT的批次和即时反应(实时)MALDI -夜班期间BC阳性结果的-TOF MS病原体鉴定。将结果与常规BC处理中的TAT进行比较,并在正常工作时间内进行生化鉴定。结果:连续的BC孵育和分批MALDI-TOF MS分析使报告细菌物种的平均TAT减少了多达58.7小时。与理想条件下的即时工作流程模型相比,分批MALDI-TOF MS分析的TAT平均要差4.9小时,而对工作人员的可用性没有任何限制。结论:与BC的连续培养一起,MALDI-TOF MS的24小时可用性可减少常规临床实验室环境中用于鉴定微生物病原体的TAT。与实时识别相比,阳性BC的分批测试要花费几个小时,但仍远胜于经典BC处理。需要更大规模的前瞻性研究来评估全天候快速病原体鉴定对败血病患者医疗决策的贡献。

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