首页> 外文期刊>Journal of Clinical Microbiology >Identification of Blood Culture Isolates Directly from Positive Blood Cultures by Use of Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry and a Commercial Extraction System: Analysis of Performance, Cost, and Turnaround Time
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Identification of Blood Culture Isolates Directly from Positive Blood Cultures by Use of Matrix-Assisted Laser Desorption Ionization–Time of Flight Mass Spectrometry and a Commercial Extraction System: Analysis of Performance, Cost, and Turnaround Time

机译:通过使用基质辅助激光解吸电离–飞行时间质谱和商业提取系统,直接从阳性血培养物中鉴定出血培养分离物:性能,成本和周转时间分析

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Matrix-assisted laser desorption ionization–time of flight (MALDI-TOF) mass spectrometry represents a revolution in the rapid identification of bacterial and fungal pathogens in the clinical microbiology laboratory. Recently, MALDI-TOF has been applied directly to positive blood culture bottles for the rapid identification of pathogens, leading to reductions in turnaround time and potentially beneficial patient impacts. The development of a commercially available extraction kit (Bruker Sepsityper) for use with the Bruker MALDI BioTyper has facilitated the processing required for identification of pathogens directly from positive from blood cultures. We report the results of an evaluation of the accuracy, cost, and turnaround time of this method for 61 positive monomicrobial and 2 polymicrobial cultures representing 26 species. The Bruker MALDI BioTyper with the Sepsityper gave a valid (score, >1.7) identification for 85.2% of positive blood cultures with no misidentifications. The mean reduction in turnaround time to identification was 34.3 h (P < 0.0001) in the ideal situation where MALDI-TOF was used for all blood cultures and 26.5 h in a more practical setting where conventional identification or identification from subcultures was required for isolates that could not be directly identified by MALDI-TOF. Implementation of a MALDI-TOF-based identification system for direct identification of pathogens from blood cultures is expected to be associated with a marginal increase in operating costs for most laboratories. However, the use of MALDI-TOF for direct identification is accurate and should result in reduced turnaround time to identification.
机译:基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)代表了临床微生物学实验室快速鉴定细菌和真菌病原体的一场革命。最近,MALDI-TOF已直接应用于阳性血培养瓶,以快速鉴定病原体,从而缩短了周转时间,并潜在地有益于患者。与布鲁克MALDI BioTyper一起使用的市售提取试剂盒(Bruker Sepsityper)的开发促进了直接从血培养阳性中鉴定病原体所需的处理。我们报告了61种阳性单微生物和2种代表26种细菌的多菌种培养物的准确性,成本和周转时间的评估结果。带有Sepsityper的Bruker MALDI BioTyper对85.2%的阳性血液培养物进行了有效的鉴定(评分,> 1.7),没有错误鉴定。在理想情况下,将MALDI-TOF用于所有血液培养的理想情况下,识别周转时间平均减少了34.3 h( P <0.0001),而在常规诊断或识别更实际的情况下,平均周转时间减少了26.5 h对于不能由MALDI-TOF直接鉴定的分离株,需要从亚培养物中提取。实施基于MALDI-TOF的识别系统以直接识别血液培养物中的病原体,预计将与大多数实验室的运营成本略有增加有关。但是,使用MALDI-TOF进行直接识别是准确的,应缩短识别周转时间。

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