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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A microfluidic cigarette smoke collecting platform for simultaneous sample extraction and multiplex analysis
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A microfluidic cigarette smoke collecting platform for simultaneous sample extraction and multiplex analysis

机译:一种微流控香烟烟雾采集平台,可同时进行样品提取和多重分析

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摘要

In this work, we report a novel microfluidic gas collecting platform aiming at simultaneous sample extraction and multiplex mass spectrometry (MS) analysis. An alveolar-mimicking elastic polydimethylsiloxane (PDMS) structures was designed to move dynamically driven by external pressure. The movement was well tuned both by its amplitude and rhythm following the natural process of human respiration. By integrating the alveolar units into arrays and assembling them to gas channels, a cyclic contraction/expansion system for gas inhale and exhale was successfully constructed. Upon equipping this system with a droplet array on the alveolar array surface, we were able to get information of inhaled smoke in a new strategy. Here, with cigarette smoke as an example, analysis of accumulation for target molecules during passive smoking is taken. Relationships between the breathing times, distances away from smokers and inhaled content of nicotine are clarified. Further, by applying different types of extraction solvent droplets on different locations of the droplet array, simultaneous extraction of nicotine, formaldehyde and caproic acid in sidestream smoke (SS) are realized. Since the extract droplets are spatially separated, they can be directly analyzed by MS which is fast and can rid us of all complex sample separation and purification steps. Combining all these merits, this small, cheap and portable platform might find wide application in inhaled air pollutant analysis both in and outdoors. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们报告了一个新颖的微流控气体收集平台,旨在同时进行样品提取和多重质谱(MS)分析。模仿肺泡的弹性聚二甲基硅氧烷(PDMS)结构设计为在外部压力的驱动下动态移动。根据人体呼吸的自然过程,通过幅度和节奏对运动进行了很好的调整。通过将肺泡单元整合成阵列并将其组装到气体通道中,成功构建了用于气体吸入和呼出的循环收缩/膨胀系统。在该系统的肺泡阵列表面上安装了一个液滴阵列后,我们便能够以一种新策略获得吸入烟气的信息。在此,以香烟烟雾为例,分析被动吸烟过程中目标分子的积累情况。呼吸时间,距吸烟者的距离与尼古丁的吸入量之间的关系已明确。此外,通过在液滴阵列的不同位置上施加不同类型的提取溶剂液滴,可以实现侧流烟气(SS)中尼古丁,甲醛和己酸的同时提取。由于提取物液滴在空间上是分离的,因此可以通过质谱直接分析它们,该方法快速且可以摆脱所有复杂的样品分离和纯化步骤。结合所有这些优点,这个小巧,便宜且便携式的平台可能会在室内和室外的吸入空气污染物分析中得到广泛应用。 (C)2015 Elsevier B.V.保留所有权利。

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