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Microfluidic Air Sampler for Highly Efficient Bacterial Aerosol Collection and Identification

机译:微流体空气采样器,用于高效细菌气溶胶的收集和鉴定

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The early warning capability of the presence of biological aerosol threats is an urgent demand in ensuing civilian and military safety. Efficient and rapid air sample collection in relevant indoor or outdoor environment is a key step for subsequent analysis of airborne microorganisms. Herein, we report a portable battery-powered sampler that is capable of highly efficient bioaerosol collection. The essential module of the sampler is a polydimethylsiloxane (PDMS) microfluidic chip, which consisted of a 3-loop double-spiral microchannel featuring embedded herringbone and sawtooth wave-shaped structures. Vibrio parahemolyticus (V. parahemolyticus) as a model microorganism, was initially employed to validate the bioaerosol collection performance of the device. Results showed that the sampling efficacy reached as high as >99.9%. The microfluidic sampler showed greatly improved capturing efficiency compared with traditional plate sedimentation methods. The high performance of our device was attributed to the horizontal inertial centrifugal force and the vertical turbulence applied to airflow during sampling. The centrifugation field and turbulence were generated by the specially designed herringbone structures when air circulated in the double-spiral microchannel. The sawtooth wave-shaped microstructure created larger specific surface area for accommodating more aerosols. Furthermore, a mixture of bacterial aerosols formed by V. parahemolyticus, Listeria monocytogenes, and Escherichia coli was extracted by the microfluidic sampler. Subsequent integration with mass spectrometry conveniently identified the multiple bacterial species captured by the sampler. Our developed standalone and cable-free sampler shows clear advantages comparing with conventional strategies, including portability, easy-to-use, and low cost, indicating great potential in future field applications.
机译:存在生物气溶胶威胁的预警能力是确保平民和军事安全的迫切需求。在相关的室内或室外环境中快速有效地采集空气样本是后续分析空气中微生物的关键步骤。在此,我们报告了一种便携式电池供电的采样器,该采样器能够高效地收集生物气溶胶。采样器的基本模块是聚二甲基硅氧烷(PDMS)微流控芯片,该芯片由3环双螺旋微通道组成,具有嵌入的人字形和锯齿波形结构。作为模型微生物的副溶血弧菌(V. parahemolyticus)最初被用来验证该装置的生物气溶胶收集性能。结果表明,采样效率高达> 99.9%。与传统的平板沉降法相比,微流体采样器显示出大大提高的捕获效率。我们的设备的高性能归因于水平惯性离心力和垂直湍流作用于采样过程中的气流。当空气在双螺旋微通道中循环时,离心场和湍流是由专门设计的人字形结构产生的。锯齿形的微结构产生较大的比表面积,以容纳更多的气溶胶。此外,通过微流体取样器提取了由副溶血性弧菌,单核细胞增生性李斯特菌和大肠杆菌形成的细菌气溶胶的混合物。随后与质谱仪集成,可以方便地确定采样器捕获的多种细菌种类。与传统策略相比,我们开发的独立无电缆采样器具有明显的优势,包括便携性,易于使用和低成本,这表明在未来的现场应用中具有巨大的潜力。

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