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An Improved In-house MALDI-TOF MS Protocol for Direct Cost-Effective Identification of Pathogens from Blood Cultures

机译:改进的内部MALDI-TOF MS协议,可直接有效地鉴定血液培养物中的病原体

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Background: Bloodstream infection is a major cause of morbidity and mortality in hospitalized patients worldwide. Delays in the identification of microorganisms often leads to a poor prognosis. The application of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) directly to blood culture (BC) broth can potentially identify bloodstream infections earlier, and facilitate timely management. Methods: We developed an “in-house” (IH) protocol for direct MALDI-TOF MS based identification of organisms in positive BCs. The IH protocol was initially evaluated and improved with spiked BC samples, and its performance was compared with the commercial Sepsityper? kit using both traditional and modified cut-off values. We then studied in parallel the performance of the IH protocol and the colony MS identifications in positive clinical BC samples using only modified cut-off values. All discrepancies were investigated by “gold standard” of gene sequencing. Results: In 54 spiked BC samples, the IH method showed comparable results with Sepsityper? after applying modified cut-off values. Specifically, accurate species and genus level identification was achieved in 88.7 and 3.9% of all the clinical monomicrobial BCs (284/301, 94.4%), respectively. The IH protocol exhibited superior performance for Gram negative bacteria than for Gram positive bacteria (92.8 vs. 82.4%). For anaerobes and yeasts, accurate species identification was achieved in 80.0 and 90.0% of the cases, respectively. For polymicrobial cultures (17/301, 5.6%), MALDI-TOF MS correctly identified a single species present in all the polymicrobial BCs under the Standard mode, while using the MIXED method, two species were correctly identified in 52.9% of the samples. Comparisons based on BC bottle type, showed that the BACTEC? Lytic/10 Anaerobic/F culture vials performed the best. Conclusion: Our study provides a novel and effective sample preparation method for MALDI-TOF MS direct identification of pathogens from positive BC vials, with a lower cost ($1.5 vs. $ 7) albeit a slightly more laborious extracting process (an extra 15 min) compared with Sepsityper? kit.
机译:背景:血流感染是全球住院患者发病和死亡的主要原因。微生物鉴定的延迟通常导致不良的预后。将基质辅助激光解吸/电离飞行时间质谱仪(MALDI-TOF MS)直接应用于血培养液(BC)肉汤可潜在地更早地识别血流感染,并有助于及时管理。方法:我们开发了一种“内部”(IH)方案,用于基于MALDI-TOF MS的直接鉴定阳性BC中的生物。最初对IH方案进行了评估,并使用加标的BC样品进行了改进,并将其性能与商用Sepsityper?该工具包同时使用传统和修改后的临界值。然后,我们仅使用修改的临界值,并行研究了IH方案和阳性临床BC样品中菌落MS鉴定的性能。所有差异均通过基因测序的“黄金标准”进行了调查。结果:在54个加标的BC样品中,IH方法显示出与Sepsityper?可比的结果。在应用修改后的临界值之后。具体而言,分别在所有临床单微生物BC中分别有88.7和3.9%(284/301,94.4%)实现了准确的物种和属水平鉴定。与革兰氏阳性菌相比,IH方案对革兰氏阴性菌表现出更好的性能(92.8对82.4%)。对于厌氧菌和酵母,分别在80.0%和90.0%的病例中实现了准确的物种鉴定。对于多菌种培养(17 / 301,5.6%),MALDI-TOF MS在标准模式下正确鉴定了所有多菌种BC中存在的单一物种,而使用MIXED方法,则在52.9%的样品中正确鉴定出两种。根据BC瓶类型进行的比较表明BACTEC? Lytic / 10厌氧/ F培养瓶效果最好。结论:我们的研究为MALDI-TOF MS直接鉴定阳性BC小瓶中的病原体提供了一种新颖且有效的样品前处理方法,尽管提取过程稍微费力(额外15分钟),但成本较低(1.5美元对7美元)。与Sepsityper相比?套件。

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