Department of Physics and Astronomy and Institute of Applied Physics, Seoul National University, Seoul, 08826, Korea.
School of Chemical and Biological Engineering, Seoul National University, Seoul, 08826, Korea.
Sci Rep. 2018 Sep 17;8(1):13945. doi: 10.1038/s41598-018-32155-1.
We report a strategy for the human-like smelling of a rose scent utilizing olfactory receptor nanodisc (ND)-based bioelectronic nose devices. In this strategy, a floating electrode (FE)-based carbon nanotube (CNT) field effect transistor (FET) was functionalized with human olfactory receptor 1A2 (hOR1A2)-embedded NDs (hOR1A2NDs). The hOR1A2NDs responded to rose scent molecules specifically, which were monitored electrically using the underlying CNT-FET. This strategy allowed us to quantitatively assess the contents of geraniol and citronellol, the main components of a rose scent, as low as 1 fM and 10 fM, respectively. In addition, it enabled us to selectively discriminate a specific rose odorant from other odorants. Significantly, we also demonstrated that the responses of hOR1A2NDs to a rose scent could be strongly enhanced by enhancer materials like a human nose. Furthermore, the method provided a means to quantitatively evaluate rose scent components in real samples such as rose oil. Since our method allows one to quantitatively evaluate general rose scent ingredients just like a human nose, it could be a powerful strategy for versatile basic research and various applications such as fragrance development.
我们报告了一种利用嗅觉受体纳米盘(ND)为基础的生物电子鼻设备模拟人类闻玫瑰花香的策略。在该策略中,一个基于浮动电极(FE)的碳纳米管(CNT)场效应晶体管(FET)被功能化,以嵌入有人类嗅觉受体 1A2(hOR1A2)的 ND(hOR1A2NDs)。hOR1A2NDs 对玫瑰花香分子有特异性响应,这可以通过底层 CNT-FET 进行电学监测。该策略允许我们定量评估香叶醇和香茅醇的含量,这两种物质分别是玫瑰花香的主要成分,其检测下限低至 1 fM 和 10 fM。此外,它还使我们能够从其他气味中选择性地识别出特定的玫瑰香味。重要的是,我们还证明了增强材料(如人类的鼻子)可以显著增强 hOR1A2NDs 对玫瑰香味的响应。此外,该方法还提供了一种在真实样品(如玫瑰油)中定量评估玫瑰香味成分的手段。由于我们的方法可以像人类的鼻子一样定量评估一般的玫瑰香味成分,因此它可能是一种强大的策略,适用于各种基础研究和应用,如香料开发。