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Liquid-phase Sample Preparation Method for Real-time Monitoring of Airborne Asbestos Fibers by Dual-mode High-throughput Microscopy

机译:通过双模高吞吐量显微镜进行空气中石棉纤维实时监测液相样品制备方法

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Asbestos that had been used widely as a construction material is a first-level carcinogen recognized by the World Health Organization. It can be accumulated in body by inhalation causing virulent respiratory diseases including lung cancer. In our previous study, we developed a high-throughput microscopy (HTM) system that can minimize human intervention accompanied by the conventional phase contrast microscopy (PCM) through automated counting of fibrous materials and thus significantly reduce analysis time and labor. Also, we attempted selective detection of chrysotile using DksA protein extracted from Escherichia coli through a recombinant protein production technique, and developed a dual-mode HTM (DM-HTM) by upgrading the HTM device. We demonstrated that fluorescently-labeled chrysotile asbestos fibers can be identified and enumerated automatically among other types of asbestos fibers or non-asbestos particles in a high-throughput manner through a newly modified HTM system for both reflection and fluorescence imaging. However there is a limitation to apply DM-HTM to airborne sample with current air collecting method due to the difficulty of applying the protein to dried asbestos sample. Here, we developed a technique for preparing liquid-phase asbestos sample using an impinger normally used to collect odor molecules in the air. It would be possible to improve the feasibility of the dual-mode HTM by integrating a sample preparation unit for making collected asbestos sample dispersed in a solution. The new technique developed for highly sensitive and automated asbestos detection can be a potential alternative to the conventional manual counting method, and it may be applied on site as a fast and reliable environmental monitoring tool.
机译:被广泛用于建筑材料的石棉是世界卫生组织认可的一级致癌物质。它可以通过吸入导致毒性呼吸系统患有肺癌的毒性呼吸系统患者累积。在我们以前的研究中,我们开发了一种高吞吐量显微镜(HTM)系统,可以通过自动计数纤维材料的自动计数来最小化人类干预,从而使纤维材料的自动计数显着降低分析时间和劳动力。此外,我们尝试使用从大肠杆菌大肠杆菌提取的DKSA蛋白通过重组蛋白质生产技术选择性检测Chrysotile,并通过升级HTM器件开发了双模HTM(DM-HTM)。我们证明,可以通过用于反射和荧光成像的新改性的HTM系统,通过新改性的HTM系统在其他类型的石棉纤维或非石棉颗粒中自动地鉴定和排列荧光标记的菊花石棉纤维。然而,由于难以将蛋白质施加到干燥的石棉样品中,有限制将DM-HTM应用于空气收集方法的空气收集方法。在这里,我们开发了一种用于使用通常用于在空气中收集气味分子的浸出物制备液相石棉样品的技术。通过整合样品制备单元来改善双模HTM的可行性,用于在溶液中分散在溶液中的收集的石棉样品。为高敏感和自动石棉检测开发的新技术可以是传统手动计数方法的潜在替代方法,并且可以在现场应用于快速可靠的环境监测工具。

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