Department of Biomolecular Science and Reaction, SANKEN, Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan.
R&D Center, Komi-Hakko Corp, 3F Osaka University Technoalliance C Bldg, 2-8 Yamadaoka, Suita, Osaka 565-0871, Japan.
Sensors (Basel). 2023 Jul 5;23(13):6164. doi: 10.3390/s23136164.
Among the five human senses, light, sound, and force perceived by the eye, ear, and skin, respectively are physical phenomena, and therefore can be easily measured and expressed as objective, univocal, and simple digital data with physical quantity. However, as taste and odor molecules perceived by the tongue and nose are chemical phenomena, it has been difficult to express them as objective and univocal digital data, since no reference chemicals can be defined. Therefore, while the recording, saving, transmitting to remote locations, and replaying of human visual, auditory, and tactile information as digital data in digital devices have been realized (this series of data flow is defined as DX (digital transformation) in this review), the DX of human taste and odor information is not yet in the realization stage. Particularly, since there are at least 400,000 types of odor molecules and an infinite number of complex odors that are mixtures of these molecules, it has been considered extremely difficult to realize "human olfactory DX" by converting all odors perceived by human olfaction into digital data. In this review, we discuss the current status and future prospects of the development of "human olfactory DX", which we believe can be realized by utilizing odor sensors that employ the olfactory receptors (ORs) that support human olfaction as sensing molecules (i.e., human OR sensor).
在人类的五种感官中,光、声和力分别被眼睛、耳朵和皮肤感知,它们都是物理现象,因此可以很容易地用物理量来测量和表示为客观、唯一和简单的数字数据。然而,由于舌头和鼻子感知到的味道和气味分子是化学现象,因此很难将它们表达为客观和唯一的数字数据,因为无法定义参考化学物质。因此,尽管人类的视觉、听觉和触觉信息已经可以在数字设备中以数字数据的形式进行记录、保存、远程传输和重放(这一系列数据流在本综述中被定义为 DX(数字转换)),但人类味觉和嗅觉信息的 DX 还未实现。特别是,由于有至少 40 万个气味分子类型,并且这些分子的混合物形成了无数复杂的气味,因此人们认为将人类嗅觉感知的所有气味转换为数字数据来实现“人类嗅觉 DX”是极其困难的。在本综述中,我们讨论了开发“人类嗅觉 DX”的现状和未来前景,我们相信可以通过利用嗅觉传感器来实现,这些传感器使用支持人类嗅觉的嗅觉受体 (OR) 作为感应分子(即人类 OR 传感器)。