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Separation, Sensing, and Metagenomic Analysis of Aerosol Particles Using MMD Sensors

机译:使用MMD传感器对气溶胶颗粒进行分离,传感和超基因组分析

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In this study, we developed a new metal mesh device (MMD) sensor to quantify the amount of aerosol particles. MMDs are substrate materials consisting of thin membranes with a periodic structure on smooth surfaces that can be used to detect and separate particles. The surface structure comprises square apertures of characteristic size that bestow unique optical properties. Aerosol particles, including the damaging environmental pollutant particulate matter 2.5 (PM2.5), were separated based on size and captured on MMD surfaces using a small air pump. The amount of captured particles was evaluated by band shifts in infrared (IR) transmittance spectra. Furthermore, bacterial genomic DNA attached to aerosol particles could be extracted with high yield, and extracted DNA resulted in bacterial constitution, as demonstrated by next-generation sequencing (NGS) analysis of bacterial 16S ribosomal DNA. MMD sensors were used to analyze aerosol particles from suburbs of Kenya and Japan. The results provided information on the bacterial biota of the environment in each local area, and pathogenic bacteria were identified. The results suggest that MMD sensors are useful tools for epidemiological and environmental studies, as well as quality control applications for drugs, fine chemicals, and food components.
机译:在这项研究中,我们开发了一种新型的金属网装置(MMD)传感器来量化气溶胶颗粒的数量。 MMD是由光滑表面上具有周期性结构的薄膜组成的基板材料,可用于检测和分离颗粒。表面结构包括具有特征尺寸的正方形孔,这些正方形孔具有独特的光学特性。包括破坏性环境污染物颗粒物2.5(PM2.5)在内的气溶胶颗粒根据大小进行分离,并使用小型气泵捕获在MMD表面。通过红外(IR)透射光谱中的谱带转移评估捕获的颗粒数量。此外,如细菌16S核糖体DNA的下一代测序(NGS)分析所证明的那样,附着在气溶胶颗粒上的细菌基因组DNA可以被高产率地提取,并且提取出的DNA可以构成细菌。 MMD传感器用于分析肯尼亚和日本郊区的气溶胶颗粒。结果提供了每个局部环境中细菌群落的信息,并确定了病原菌。结果表明,MMD传感器是流行病学和环境研究以及药物,精细化学品和食品成分的质量控制应用的有用工具。

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