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Rapid Detection of Bacteria from Blood with Surface-Enhanced Raman Spectroscopy

机译:表面增强拉曼光谱法快速检测血液中的细菌

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Traditional methods for identifying pathogens in bacteremic patients are slow (24-48+ h). This can lead to physicians making treatment decisions based on an incomplete diagnosis and potentially increasing the patient's mortality risk. To decrease time to diagnosis, we have developed a novel technology that can recover viable bacteria directly from whole blood and identify them in less than 7 h. Our technology combines a sample preparation process with surface-enhanced Raman spectroscopy (SERS). The sample preparation process enriches viable microorganisms from 10 mL of whole blood into a 200 mu L aliquot. After a short incubation period, SERS is used to identify the microorganisms. We further demonstrated that SERS can be used as a broad detection method, as it identified a model set of 17 clinical blood culture isolates and microbial reference strains with 100% identification agreement. By applying the integrated technology of sample preparation and SERS to spiked whole blood samples, we were able to correctly identify both Staphylococcus aureus and Escherichia coli 97% of the time with 97% specificity and 88% sensitivity.
机译:在细菌患者中鉴定病原体的传统方法很慢(24-48 + h)。这可能导致医师根据不完全的诊断做出治疗决策,并有可能增加患者的死亡风险。为了减少诊断时间,我们开发了一种新技术,可以直接从全血中回收活细菌并在不到7小时的时间内对其进行鉴定。我们的技术将样品制备过程与表面增强拉曼光谱(SERS)相结合。样品制备过程将10 mL全血中的活微生物富集到200μL等分试样中。在短暂的温育期后,使用SERS鉴定微生物。我们进一步证明了SERS可以用作一种广泛的检测方法,因为它以100%的鉴定一致性鉴定了17种临床血液培养分离株和微生物参考菌株的模型集。通过将样品制备和SERS的集成技术应用于加标的全血样品,我们能够以97%的特异性和88%的灵敏度正确识别金黄色葡萄球菌和大肠杆菌。

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