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Rapid Identification of Bacteria from Positive Blood Culture Bottles by Use of Matrix-Assisted Laser Desorption-Ionization Time of Flight Mass Spectrometry Fingerprinting

机译:基质辅助激光解吸电离飞行时间质谱指纹图谱快速鉴定阳性血液培养瓶中的细菌

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摘要

Early and adequate antimicrobial therapy has been shown to improve the clinical outcome in bloodstream infections (BSI). To provide rapid pathogen identification for targeted treatment, we applied matrix-assisted laser desorption-ionization time of flight (MALDI-TOF) mass spectrometry fingerprinting to bacteria directly recovered from blood culture bottles. A total of 304 aerobic and anaerobic blood cultures, reported positive by a Bactec 9240 system, were subjected in parallel to differential centrifugation with subsequent mass spectrometry fingerprinting and reference identification using established microbiological methods. A representative spectrum of bloodstream pathogens was recovered from 277 samples that grew a single bacterial isolate. Species identification by direct mass spectrometry fingerprinting matched reference identification in 95% of these samples and worked equally well for aerobic and anaerobic culture bottles. Application of commonly used score cutoffs to classify the fingerprinting results led to an identification rate of 87%. Mismatching mostly resulted from insufficient bacterial numbers and preferentially occurred with Gram-positive samples. The respective spectra showed low concordance to database references and were effectively rejected by score thresholds. Spiking experiments and examination of the respective study samples even suggested applicability of the method to mixed cultures. With turnaround times around 100 min, the approach allowed for reliable pathogen identification at the day of blood culture positivity, providing treatment-relevant information within the critical phase of septic illness.
机译:早期和适当的抗微生物治疗已显示可改善血流感染(BSI)的临床疗效。为了提供快速的病原体识别以进行靶向治疗,我们对直接从血液培养瓶中回收的细菌应用了基质辅助激光解吸电离飞行时间(MALDI-TOF)质谱指纹图谱。 Bactec 9240系统报告阳性的总共304种需氧和厌氧血培养物与差分离心法平行进行,随后采用已建立的微生物学方法进行质谱指纹图谱和参考鉴定。从生长单个细菌分离物的277个样品中回收了代表性的血流病原体谱。通过直接质谱指纹图谱进行的物种鉴定与95%的样品中的参考鉴定相匹配,对于需氧和厌氧培养瓶同样有效。应用常用的分数截止值对指纹结果进行分类可导致87%的识别率。错配主要是由于细菌数量不足造成的,并且优先发生在革兰氏阳性样本中。各个光谱显示出与数据库参考的一致性低,并且被分数阈值有效地拒绝。加标实验和对各个研究样品的检查甚至表明该方法适用于混合培养。由于周转时间约为100分钟,因此该方法可在血培养阳性当天可靠地鉴定病原体,从而在败血病的关键时期提供与治疗相关的信息。

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