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通过将人类嗅觉受体整合到聚二乙酰乙烯/脂质纳米组装体中,实现了对气味物质香叶醇的可视化检测。

Visual detection of odorant geraniol enabled by integration of a human olfactory receptor into polydiacetylene/lipid nano-assembly.

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Korea.

出版信息

Nanoscale. 2019 Apr 23;11(16):7582-7587. doi: 10.1039/c9nr00249a.

Abstract

A new polydiacetylene lipid/human olfactory receptor nano-assembly was fabricated for the visual detection of an odorant for the first time. The assembly consisted of phospholipid-mixed polydiacetylenes (PDAs) and human olfactory receptors (hORs) in detergent micelles. To overcome the limitations of bioelectronic noses, hOR-embedded chromatic complexes (PDA/hORs) were developed, introducing PDAs that showed color and fluorescence transitions against various stimuli. The chromatic nanocomplexes reacted with target molecules, showing a fluorescence intensity increase in a dose-dependent manner and target selectivity among various odorants. As a result, a color transition of the assembly from blue to purple occurred, allowing the visual detection of the odorant geraniol. Through circular dichroism (CD) spectroscopy and a tryptophan fluorescence quenching method, the structural and functional properties of the hORs embedded in the complexes were confirmed. Based on this first work, future array devices, integrating multiple nano-assemblies, can be substantiated and utilized in environmental assessment and analysis of food quality.

摘要

首次构建了一种新型的聚二乙炔脂质/人类嗅觉受体纳米组装体,用于可视化检测气味剂。该组装体由磷脂混合聚二乙炔(PDAs)和去污剂胶束中的人类嗅觉受体(hORs)组成。为了克服生物电子鼻的局限性,开发了嵌入 hOR 的显色复合物(PDA/hORs),引入了对各种刺激显示颜色和荧光转变的 PDAs。显色纳米复合物与目标分子反应,表现出荧光强度的增加与剂量呈依赖性,并在各种气味剂之间具有目标选择性。结果,组装体从蓝色到紫色发生颜色转变,从而可以可视化检测气味剂香叶醇。通过圆二色性(CD)光谱和色氨酸荧光猝灭法,证实了复合物中嵌入的 hOR 的结构和功能特性。基于这项初步工作,未来可以整合多个纳米组装体的阵列器件,用于环境评估和食品质量分析。

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