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Nanovesicle-based bioelectronic nose platform mimicking human olfactory signal transduction

机译:基于纳米囊泡的生物电子鼻平台,模拟人类嗅觉信号转导

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摘要

We developed a nanovesicle-based bioelectronic nose (NBN) that could recognize a specific odorant and mimic the receptor-mediated signal transmission of human olfactory systems. To build an NBN, we combined a single-walled carbon nanotube-based field effect transistor with cell-derived nanovesicles containing human olfactory receptors and calcium ion signal pathways. Importantly, the NBN took advantages of cell signal pathways for sensing signal amplification, enabling ~100 times better sensitivity than that of previous bioelectronic noses based on only olfactory receptor protein and carbon nanotube transistors. The NBN sensors exhibited a human-like selectivity with single-carbon-atomic resolution and a high sensitivity of 1. fM detection limit. Moreover, this sensor platform could mimic a receptor-meditated cellular signal transmission in live cells. This sensor platform can be utilized for the study of molecular recognition and biological processes occurring at cell membranes and also for various practical applications such as food screening and medical diagnostics.
机译:我们开发了一种基于纳米囊泡的生物电子鼻(NBN),它可以识别特定的气味并模仿人类嗅觉系统的受体介导的信号传递。为了构建NBN,我们将基于单壁碳纳米管的场效应晶体管与包含人嗅觉受体和钙离子信号通路的细胞衍生纳米囊泡相结合。重要的是,NBN充分利用了细胞信号通路来感测信号放大,与仅基于嗅觉受体蛋白和碳纳米管晶体管的生物电子鼻相比,其灵敏度提高了约100倍。 NBN传感器表现出类似于人的选择性,具有单碳原子分辨率,灵敏度高达1. fM检测极限。而且,该传感器平台可以模拟活细胞中受体介导的细胞信号传输。该传感器平台可用于研究细胞膜上发生的分子识别和生物学过程,还可用于各种实际应用,例如食品筛选和医学诊断。

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