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Artificial cell membrane system for odorant sensor: development of solution exchange driven by superabsorbent polymer for repeatable detection

机译:用于气味传感器的人工细胞膜系统:由超吸收性聚合物驱动的溶液交换的开发,可重复检测

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摘要

This paper describes an odorant sensor based on artificial cell membrane device integrated with a system of solution exchange for repeatable odorant detection. The olfactory receptor (OR) was reconstituted in the membrane on the developed device and the target odorant, 1-octen-3-ol, was detected by the opening current of the ionotropic receptor (OR). Solution exchange, which is to refresh the absorbed odorant from OR, was implemented by continuous flow of a buffer solution, driven by suction force of superabsorbent polymer. Note that no electricity is required for the exchange system. To demonstrate the solution exchange, a biological nanopore was reconstituted in the membrane, and blocking phenomena was observed using hepta-6-sulfato-β-cyclodextrin. The frequency of current steps that correspond to blocking of the nanopore decreased over the solution exchange. We believe that this solution exchange system is applicable to the odorant sensor based on artificial cell membrane and realizes repeatable odorant detection.
机译:本文介绍了一种基于人工细胞膜装置的气味传感器,该装置与溶液交换系统集成在一起,可重复检测气味。嗅觉受体(OR)重构在已开发设备上的膜中,目标离子气味剂1-octen-3-ol通过离子型受体(OR)的打开电流进行检测。由超吸收性聚合物的吸力驱动的缓冲溶液连续流动,实现了溶液交换,该交换是从OR刷新吸收的增香剂。请注意,交换系统不需要电。为了证明溶液交换,在膜中重建了生物纳米孔,并且使用七-硫酸盐-β-环糊精观察到了阻断现象。在溶液交换中,对应于纳米孔封闭的当前步骤的频率降低了。我们相信这种溶液交换系统适用于基于人造细胞膜的气味传感器,并实现了可重复的气味检测。

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