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Dielectrophoretic sample preparation for environmental monitoring of microorganisms: Soil particle removal

机译:用于微生物环境监测的介电样品制备:去除土壤颗粒

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摘要

Detection of pathogens from environmental samples is often hampered by sensors interacting with environmental particles such as soot, pollen, or environmental dust such as soil or clay. These particles may be of similar size to the target bacterium, preventing removal by filtration, but may non-specifically bind to sensor surfaces, fouling them and causing artefactual results. In this paper, we report the selective manipulation of soil particles using an AC electrokinetic microfluidic system. Four heterogeneous soil samples (smectic clay, kaolinitic clay, peaty loam, and sandy loam) were characterised using dielectrophoresis to identify the electrical difference to a target organism. A flow-cell device was then constructed to evaluate dielectrophoretic separation of bacteria and clay in a continous flow through mode. The average separation efficiency of the system across all soil types was found to be 68.7% with a maximal separation efficiency for kaolinitic clay at 87.6%. This represents the first attempt to separate soil particles from bacteria using dielectrophoresis and indicate that the technique shows significant promise; with appropriate system optimisation, we believe that this preliminary study represents an opportunity to develop a simple yet highly effective sample processing system.
机译:与环境颗粒(如烟灰,花粉或环境粉尘(如土壤或粘土))相互作用的传感器通常会阻碍从环境样品中检测病原体。这些颗粒的大小可能与目标细菌相似,可防止通过过滤去除,但可能非特异性地结合到传感器表面,弄脏传感器并造成假象结果。在本文中,我们报告了使用交流电动微流体系统对土壤颗粒的选择性处理。使用介电电泳对四种异质土壤样品(近黏土,高岭土,豆质壤土和沙质壤土)进行表征,以鉴定与目标生物的电差异。然后构造流动池装置,以评估连续流动模式下细菌和粘土的介电泳分离。发现该系统在所有土壤类型上的平均分离效率为68.7%,其中高岭土的最大分离效率为87.6%。这是首次使用介电电泳从细菌中分离土壤颗粒的尝试,并表明该技术显示出巨大的前景。通过适当的系统优化,我们相信这项初步研究为开发简单而高效的样品处理系统提供了机会。

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