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人源味觉受体功能化场效应晶体管作为类人纳米生物电子舌。

Human taste receptor-functionalized field effect transistor as a human-like nanobioelectronic tongue.

机构信息

School of Chemical and Biological Engineering, Bio-MAX Institute, Seoul National University, Seoul 151-744, Republic of Korea.

出版信息

Nano Lett. 2013 Jan 9;13(1):172-8. doi: 10.1021/nl3038147. Epub 2012 Dec 5.

DOI:10.1021/nl3038147
PMID:23176205
Abstract

In this study, we developed a human taste receptor protein, hTAS2R38-functionalized carboxylated polypyrrole nanotube (CPNT)-field effect transistor (FET) as a nanobioelectronic tongue (nbe-tongue) that displayed human-like performance with high sensitivity and selectivity. Taster type (PAV) and nontaster type (AVI) hTAS2R38s were expressed in Escherichia coli (E. coli) at a high level and immobilized on a CPNT-FET sensor platform. Among the various tastants examined, PAV-CPNT-FET exclusively responded to target bitterness compounds, phenylthiocarbamide (PTC) and propylthiouracil (PROP), with high sensitivity at concentrations as low as 1 fM. However, no significant changes were observed in the AVI-CPNT-FET in response to the target bitter tastants. This nbe-tongue exhibited different bitter-taste perception of compounds containing thiourea (N-C═S) moieties such as PTC, PROP, and antithyroid toxin in vegetables, which corresponded to the haplotype of hTAS2R38 immobilized on CPNTs. This correlation with the type of receptor is very similar to the human taste system. Thus, the artificial taste sensor developed in this study allowed for the efficient detection of target tastants in mixture and real food sample with a human-like performance and high sensitivity. Furthermore, our nbe-tongue could be utilized as a substitute for cell-based assays and to better understand the mechanisms of human taste.

摘要

在这项研究中,我们开发了一种人味觉受体蛋白 hTAS2R38 功能化羧基化聚吡咯纳米管(CPNT)-场效应晶体管(FET)作为纳米生物电子舌(nbe-tongue),具有高灵敏度和选择性,表现出类似人类的性能。味觉类型(PAV)和非味觉类型(AVI)的 hTAS2R38 在大肠杆菌(E. coli)中高水平表达,并固定在 CPNT-FET 传感器平台上。在所检查的各种味觉剂中,PAV-CPNT-FET 仅对目标苦味化合物苯硫脲(PTC)和丙硫氧嘧啶(PROP)表现出高灵敏度,其浓度低至 1 fM。然而,AVI-CPNT-FET 对目标苦味剂没有明显的变化。这种 nbe-tongue 对含有硫脲(N-C═S)部分的化合物的苦味感知不同,例如蔬菜中的 PTC、PROP 和抗甲状腺毒素,这与固定在 CPNTs 上的 hTAS2R38 的单倍型相对应。这种与受体类型的相关性与人类味觉系统非常相似。因此,本研究开发的人工味觉传感器能够以类似人类的性能和高灵敏度高效检测混合物和真实食物样品中的目标味觉剂。此外,我们的 nbe-tongue 可以用作基于细胞的测定的替代品,以更好地理解人类味觉的机制。

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