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Rapid Detection of Bacteria with Miniaturized Pyrolysis-Gas Chromatographic Analysis

机译:具有小型化热解 - 气相色谱分析的细菌的快速检测

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Rapid detection and identification of bacteria and other pathogens is important for may civilian and military applications. The profiles of biological markers such as fatty acids can be used to characterize biological samples or to distinguish bacteria at the gram-type, genera, and even species level. Common methods for whole cell bacterial analysis are neither portable nor rapid, requiring lengthy, labor intensive sample preparation and bench-scale instrumentation. These methods chemically derivatize fatty acids to produce more volatile fatty acid methyl esters (FAMEs) that can be separated and analyzed by a gas chromatograph (GC)/mass spectrometer. More recent publications demonstrate decreased sample preparation time with in situ derivatization of whole bacterial samples using pyrolysis/derivatization. Ongoing development of miniaturized pyrolysis/GC instrumentation by this department capitalizes on Sandia advances capable of pyrolysis or sample concentration, gas chromatography columns, and surface acoustic wave (SAW) sensor arrays. We will present results demonstrating the capabilities of these devices towards fulfilling the goal of portable, rapid detection and early warning of the presence of pathogens in air or water. Results include successful pyrolysis/derivatization using only milliwatts of power and rapid (<5 minutes) separation of relevant FAMEs. We will also present data showing the effects of various derivatization schemes or air as carrier gas on GC performance. The capability of SAW sensor array detection of FAMEs and preliminary results on the differentiation of bacterial samples will also be discussed with respect to the goals stated above.
机译:迅速检测和鉴定细菌和其他病原体对于愿平民和军事应用是重要的。诸如脂肪酸的生物标记物的谱可用于表征生物样品或区分革兰型,属,甚至种类水平的细菌。全细胞细菌分析的常用方法既不是便携也不快,需要冗长,劳动密集型的样品制备和替补尺度仪表。这些方法化学衍生化脂肪酸以产生更多的挥发性脂肪酸甲酯(FAME),其可以通过气相色谱仪(GC)/质谱仪分离和分析。最近的出版物表明使用热解/衍生化的全细菌样品的原位衍生化降低。该部门的小型化热解/ GC仪器的持续发展资本化能够热解或样品浓度,气相色谱柱和表面声波(SAW)传感器阵列的桑迪亚进程。我们将展示展示这些器件能够实现空气或水中病原体存在的便携式,快速检测和预警目标的目标的结果。结果包括仅使用MilliWatt的电力和快速(<5分钟)分离相关的FAME的成功热解/衍生化。我们还将提供显示各种衍生化方案或空气作为载气对GC性能的效果的数据。 SAW传感器阵列检测的捕获能力和初步结果对细菌样品的分化也将关于上述目标讨论。

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