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一种低成本、易于组装、开源的模块化移动采样器设计,用于呼吸和环境 VOCs 的热解吸分析。

A low cost, easy-to-assemble, open-source modular mobile sampler design for thermal desorption analysis of breath and environmental VOCs.

机构信息

Mechanical and Aerospace Engineering, University of California Davis, Davis, CA, United States of America.

UC Davis Lung Center, University of California Davis, Davis, CA, United States of America.

出版信息

J Breath Res. 2022 May 26;16(3). doi: 10.1088/1752-7163/ac6c9f.

Abstract

Exhaled breath vapor contains hundreds of volatile organic compounds (VOCs), which are the byproducts of health and disease metabolism, and they have clinical and diagnostic potential. Simultaneous collection of breath VOCs and background environmental VOCs is important to ensure analyses eliminate exogenous compounds from clinical studies. We present a mobile sampling system to extract gaseous VOCs onto commercially available sorbent-packed thermal desorption tubes. The sampler can be connected to a number of commonly available disposable and reusable sampling bags, in the case of this study, a Tedlar bag containing a breath sample. Alternatively, the inlet can be left open to directly sample room or environmental air when obtaining a background VOC sample. The system contains a screen for the operator to input a desired sample volume. A needle valve allows the operator to control the sample flow rate, which operates with an accuracy of -1.52 ± 0.63% of the desired rate, and consistently generated that rate with 0.12 ± 0.06% error across repeated measures. A flow pump, flow sensor and microcontroller allow volumetric sampling, as opposed to timed sampling, with 0.06 ± 0.06% accuracy in the volume extracted. Four samplers were compared by sampling a standard chemical mixture, which resulted in 6.4 ± 4.7% error across all four replicate modular samplers to extract a given VOC. The samplers were deployed in a clinical setting to collect breath and background/environmental samples, including patients with active SARS-CoV-2 infections, and the device could easily move between rooms and can undergo required disinfection protocols to prevent transmission of pathogens on the case exterior. All components required for assembly are detailed and are made publicly available for non-commercial use, including the microcontroller software. We demonstrate the device collects volatile compounds, including use of chemical standards, and background and breath samples in real use conditions.

摘要

呼出气蒸气中含有数百种挥发性有机化合物 (VOCs),它们是健康和疾病代谢的副产品,具有临床和诊断潜力。同时收集呼出气 VOC 和背景环境 VOC 对于确保分析从临床研究中消除外源性化合物非常重要。我们提出了一种移动采样系统,用于将气态 VOC 提取到市售的吸附剂填充热解吸管上。该采样器可与许多常用的一次性和可重复使用的采样袋连接,在本研究中,采样袋是一个装有呼出气样本的 Tedlar 袋。或者,当获取背景 VOC 样本时,可以将入口保持打开状态,直接对房间或环境空气进行采样。该系统包含一个屏幕,供操作员输入所需的样品体积。针阀允许操作员控制样品流速,其准确度为所需流速的-1.52±0.63%,并且在重复测量中以 0.12±0.06%的误差一致地产生该流速。流量泵、流量传感器和微控制器允许体积采样,而不是定时采样,提取体积的准确度为 0.06±0.06%。通过对标准化学混合物进行采样,对四个采样器进行了比较,结果表明所有四个重复模块采样器提取给定 VOC 的误差为 6.4±4.7%。该采样器在临床环境中用于收集呼出气和背景/环境样本,包括患有活动性 SARS-CoV-2 感染的患者,并且该设备可以轻松地在房间之间移动,并且可以进行必要的消毒程序,以防止病原体在设备外部传播。用于组装的所有组件都详细列出,并可公开获得,供非商业使用,包括微控制器软件。我们证明该设备可收集挥发性化合物,包括在实际使用条件下使用化学标准品、背景和呼出气样本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6a3/9540606/bd920ace2e14/nihms-1810721-f0001.jpg

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