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首页> 外文期刊>Journal of Clinical Microbiology >Use of PCR Coupled with Electrospray Ionization Mass Spectrometry for Rapid Identification of Bacterial and Yeast Bloodstream Pathogens from Blood Culture Bottles
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Use of PCR Coupled with Electrospray Ionization Mass Spectrometry for Rapid Identification of Bacterial and Yeast Bloodstream Pathogens from Blood Culture Bottles

机译:PCR与电喷雾电离质谱联用用于快速鉴定血培养瓶中的细菌和酵母血流病原体

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摘要

Sepsis is among the top 10 causes of mortality in the United States. Rapid administration of antibiotics is one of the most important contributors to patient survival, yet only a limited number of methods exist for rapid identification of microbes cultivated from bloodstream infections, which can lead to sepsis. While traditional single-target molecular methods have been shown to greatly improve survival for septic patients by enabling rapid deescalation of broad-spectrum antibiotics, multiplex methods offer even greater possibilities. A novel multiplex method, PCR coupled to electrospray ionization mass spectrometry (PCR/ESI-MS), was used to identify the genus and species of microorganisms found to cause human bloodstream infections. DNA was directly extracted from 234 BacT-Alert blood culture bottles, and results were compared to those obtained by clinical reference standard methods. The study results demonstrated 98.7% and 96.6% concordance at the genus and species levels, respectively. Mixtures of microbes were identified in 29 blood culture bottles, including mixed species of the same genus, as well as mixtures containing Gram-positive and Gram-negative organisms, exemplifying the PCR/ESI-MS capability to identify multiple organisms simultaneously without the need for cultivation. This study demonstrates high analytical accuracy in comparison to routine subculture of blood culture bottles and phenotypic identification of microbes. Without foreknowledge of the microorganisms potentially present, the PCR/ESI-MS methods can deliver accurate results in as little as 5 to 6 h after a positive alarm from the automated blood culture system; however, current batch mode testing limits the method's clinical utility at this time.
机译:败血症是美国死亡的十大原因之一。快速施用抗生素是患者生存的最重要因素之一,但目前仅有有限数量的方法可以快速鉴定从血流感染中培养出来的微生物,这可能导致败血症。尽管传统的单靶分子方法已被证明可以使广谱抗生素迅速降级,从而大大提高了败血病患者的生存率,但多重方法提供了更大的可能性。一种新颖的多重方法,PCR结合电喷雾电离质谱(PCR / ESI-MS),用于鉴定发现导致人类血液感染的微生物的种类和种类。直接从234个BacT-Alert血液培养瓶中提取DNA,并将结果与​​通过临床参考标准方法获得的结果进行比较。研究结果表明,在属和种水平上的一致性分别为98.7%和96.6%。在29个血液培养瓶中鉴定出了微生物混合物,包括相同属的混合菌种以及含有革兰氏阳性和革兰氏阴性生物的混合物,证明了PCR / ESI-MS无需同时鉴定多种生物的能力。培养。与常规的血培养瓶传代培养和微生物的表型鉴定相比,该研究证明了较高的分析准确性。在不预知可能存在的微生物的情况下,PCR / ESI-MS方法可以在自动血液培养系统发出积极警报后的短短5至6小时内提供准确的结果。但是,当前的批处理模式测试目前限制了该方法的临床实用性。

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