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Field detection of bacillus spore aerosols with stand-alone pyrolysis-gas chromatography and ion mobility spectrometry

机译:独立的热解-气相色谱和离子迁移谱法现场检测芽孢杆菌气溶胶

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Abstract: A commercially available, hand-held chemical vapor detector was modified to detect Gram-positive Bacillus subtilis var. globigii spores (BG) in outdoor field scenarios. An Airborne Vapor Monitor (AVM) ion mobility spectrometry (IMS) vapor detector was interfaced to a biological sample processing and transfer introduction system. The biological sample processing was accomplished by quartz tube pyrolysis (Py), and the resultant vapor was transferred by gas chromatography (GC) to the IMS detector. The Py-GC/IMS system can be described as a hyphenated device where two analytical dimensions, in series, allow the separation and isolation of individual components from the pyrolytic decomposition of biological analytes. Gram positive spores such as BG contain 5 - 15% by weight of dipicolinic acid (DPA), and picolinic acid is a pyrolysis product of DPA. Picolinic acid has a high proton affinity, and it is detected in a sensitive fashion by the atmospheric pressure-based IMS device. Picolinic acid occupies a unique region in the GC/IMS data domain with respect to other bacterial pyrolysis products. A 1000 to 1, air-to-air, aerosol concentrator was interfaced to the Py-GC/IMS instrument, and the system was placed in an open-air, Western United States desert environment. The system was tested with BG spore aerosol releases, and the instrument was remotely operated during a trial. A Met-One aerosol particle counter was placed next to the Py-GC/IMS so as to obtain a real-time record of the ambient and bacterial aerosol challenges. The presence/absence of an aerosol event, determined by an aerosol particle counter and a slit sampler-agar plate system, was compared to the presence/absence of a picolinic acid response in a GC/IMS data window at selected times in a trial with respect to a BG challenge. In the 21 BG trials, the Py-GC/IMS instrument experienced two true negatives, no false positives, and the instrument developed a software failure in one trial. The remaining 18 trials were true positive determinations for the presence of BG aerosol, and a limit of detection for the Py-GC/IMS instrument was estimated at approximately 3300 BG spore-containing particles. !19
机译:摘要:对市售的手持式化学蒸气检测仪进行了改进,以检测革兰氏阳性枯草芽孢杆菌变种。户外野外环境中的globigii孢子(BG)。机载蒸气监测器(AVM)离子迁移谱(IMS)蒸气检测器连接到生物样品处理和转移引入系统。通过石英管热解(Py)完成生物样品处理,然后将所得蒸气通过气相色谱(GC)转移至IMS检测器。 Py-GC / IMS系统可以描述为一种连字设备,其中两个分析尺寸串联,可以从生物分析物的热分解中分离和分离出各个成分。革兰氏阳性孢子(例如BG)含有5-15%(重量)的二吡啶甲酸(DPA),而吡啶甲酸是DPA的热解产物。吡啶甲酸具有高的质子亲和力,并且通过基于大气压的IMS设备以灵敏的方式检测到。相对于其他细菌热解产物,吡啶甲酸在GC / IMS数据域中占据唯一区域。将1000对1的空对空气溶胶浓缩器连接到Py-GC / IMS仪器,并将该系统放置在美国西部的露天沙漠环境中。该系统使用BG孢子气溶胶释放进行了测试,并且该仪器在试验期间可以远程操作。在Py-GC / IMS旁边放置一个Met-One气溶胶粒子计数器,以获取环境和细菌气溶胶挑战的实时记录。在试验中,将由气溶胶颗粒计数器和狭缝采样琼脂板系统确定的气溶胶事件的存在与否与在选定时间的GC / IMS数据窗口中的吡啶甲酸反应的存在与否进行了比较,尊重BG挑战。在21个BG试验中,Py-GC / IMS仪器经历了两个真实的阴性,没有错误的阳性,并且该仪器在一次试验中出现了软件故障。其余的18个试验是对BG气溶胶存在的真实阳性测定,并且Py-GC / IMS仪器的检出限估计为约3300 BG含孢子颗粒。 !19

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