Designable peptides on graphene field-effect transistors for selective detection of odor molecules

气味 纳米技术 生物传感器 分子 电子鼻 化学 嗅觉感受器 嗅觉 材料科学 受体 有机化学 生物化学 生物 神经科学
作者
Chishu Homma,Mirano Tsukiiwa,Hironaga Noguchi,Masayoshi Tanaka,Mina Okochi,Hideyuki Tomizawa,Yoshiaki Sugizaki,Atsunobu Isobayashi,Yuhei Hayamizu
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:224: 115047-115047 被引量:19
标识
DOI:10.1016/j.bios.2022.115047
摘要

Gas sensing based on graphene field-effect transistors (GFETs) has gained broad interest due to their high sensitivity. Further progress in gas sensing with GFETs requires to detection of various odor molecules for applications in the environmental monitoring, healthcare, food, and cosmetic industries. To develop the ubiquitous odor-sensing system, establishing an artificial sense of smell with electronic devices by mimicking olfactory receptors will be key. Although the application of olfactory receptors to GFETs is straightforward for odor sensing, synthetic molecules with a similar function to olfactory receptors would be desirable to realize the robust performance of sensing. In this work, we designed three new peptides consisting of two domains: a bio-probe to the target molecules and a molecular scaffold. These peptides were rationally designed based on a motif sequence in olfactory receptors and self-assembled into a molecular thin film on GFETs. Limonene, methyl salicylate, and menthol were employed as representative odor molecules of plant flavors to demonstrate the biosensing of odor molecules. The conductivity change of GFETs against the binding to odor molecules with various concentrations and the dynamic response revealed a distinct signature of three different peptides against individual species of the target molecules. The kinetic response of each peptide exhibited characteristic time constants in the adsorption and desorption process, also supported by the principal component analysis. Our demonstration of the graphene odor sensors with the designed peptides opens a way to establish future peptide-array sensors with multi-sequence of peptide, realizing an odor sensing system with higher selectivity.
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