School of Chemical and Biological Engineering, Seoul National University, Seoul 151-742, Republic of Korea.
Department of Physics and Astronomy, Seoul National University, Seoul 151-742, Republic of Korea.
Biosens Bioelectron. 2015 Sep 15;71:179-185. doi: 10.1016/j.bios.2015.04.033. Epub 2015 Apr 14.
A bioelectronic nose based on a novel microfluidic system (μBN) was fabricated to detect gaseous trimethylamine (TMA) in real-time. Single-walled carbon nanotube-field effect transistors (SWNT-FETs) were functionalized with olfactory receptor-derived peptides (ORPs) that can recognize the TMA molecules. The ORP-coated SWNT-FETs were assembled with a microfluidic channel and were sealed with top and bottom frames. This simple process was used to complete the μBNs, and a well-defined condition was achieved to detect the gaseous molecules. The μBNs allowed us to detect gaseous TMA molecules down to 10 parts per trillion (ppt) in real-time and showed high selectivity when distinguishing gaseous TMA from other gaseous odorants. The sensor was used to determine the quality of seafood (oysters), and spoiled seafood and other types of spoiled foods were also successfully discriminated without any pretreatment processes. These results indicate that portable-scale platforms can be manufactured by using μBNs and can be applicable for real-time on-site gas analysis.
基于新型微流控系统(μBN)的生物电子鼻实时检测气态三甲胺(TMA)。单壁碳纳米管场效应晶体管(SWNT-FET)经可识别 TMA 分子的气味受体衍生肽(ORP)功能化。ORP 涂层的 SWNT-FET 与微流道组装并用顶框和底框密封。这个简单的过程用于完成 μBN,并达到了检测气态分子的明确条件。μBN 能够实时检测到低至十亿分之一(ppt)的气态 TMA 分子,并且在区分气态 TMA 与其他气态气味方面表现出很高的选择性。该传感器用于检测海鲜(牡蛎)的质量,并且无需任何预处理过程即可成功区分变质海鲜和其他类型的变质食品。这些结果表明,可以使用 μBN 制造便携式平台,并且可适用于实时现场气体分析。