Flexible bioelectronic nose based on olfactory receptor/hydrogel hybrid nanostructures for the direct detection of odorants in both the gas and liquid phases

电子鼻 嗅觉感受器 纳米技术 生物传感器 八醛 纳米结构 生物 材料科学 嗅觉系统 受体 化学 生物 色谱法 神经科学 生物化学 古生物学 己醛 自然(考古学)
作者
Danmin Choi,Jun Young Hwang,Youngju Nam,Sunwoo Bang,Seung Hwan Lee,Seunghun Hong
出处
期刊:Lab on a Chip [Royal Society of Chemistry]
卷期号:25 (13): 3230-3241 被引量:3
标识
DOI:10.1039/d4lc00789a
摘要

A flexible biosensor based on an olfactory receptor/hydrogel nanostructure has been developed for directly detecting odorants in both the gas and liquid phases. Here, nanodiscs containing olfactory receptors were encapsulated in an alginate hydrogel, and then, a nanodisc/hydrogel hybrid structure was attached to a carbon nanotube field-effect transistor (CNT-FET). The porous hydrogel enables odorant molecules to diffuse into the hybrid structure and bind to embedded nanodiscs, leading to conductance changes in the underlying CNT channel. Therefore, our sensor could sensitively detect odorant molecules down to concentrations of 1 pM. The biosensors also discriminated octanal from non-target molecules with high selectivity. Moreover, we demonstrated that our biosensor could detect octanal molecules in the gas phase, as well as in the solution phase, and be reused up to 5 times without significant performance degradation. As a proof of concept, the biosensor device was fabricated on polyethylene terephthalate (PET) film and used to build a flexible bioelectronic nose platform. These results show that our flexible biosensor based on a nanodisc/hydrogel hybrid structure could be a useful tool for the evaluation of food flavors in the gas or solution phase and could be used in versatile applications such as wearable devices.
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