School of Chemical and Biological Engineering, Seoul National University, Seoul, 151-742, Korea.
Biosens Bioelectron. 2013 Jan 15;39(1):244-9. doi: 10.1016/j.bios.2012.07.054. Epub 2012 Aug 3.
We herein report a peptide receptor-based bioelectronic nose (PRBN) that can determine the quality of seafood in real-time through measuring the amount of trimethylamine (TMA) generated from spoiled seafood. The PRBN was developed using single walled-carbon nanotube field-effect transistors (SWNT-FETs) functionalized with olfactory receptor-derived peptides (ORPs) which can recognize TMA and it allowed us to sensitively and selectively detect TMA in real-time at concentrations as low as 10fM. Utilizing these properties, we were able to not only determine the quality of three kinds of seafood (oyster, shrimp, and lobster), but were also able to distinguish spoiled seafood from other types of spoiled foods without any pretreatment processes. Especially, the use of small synthetic peptide rather than the whole protein allowed PRBNs to be simply manufactured through a single-step process and to be reused with high reproducibility due to no requirement of lipid bilayers. Furthermore, the PRBN was produced on a portable scale making it effectively useful for the food industry where the on-site measurement of seafood quality is required.
我们在此报告了一种基于肽受体的生物电子鼻(PRBN),它可以通过测量腐败海鲜产生的三甲胺(TMA)的量来实时确定海鲜的质量。PRBN 是使用单壁碳纳米管场效应晶体管(SWNT-FET)制备的,该晶体管用嗅觉受体衍生肽(ORP)进行了功能化,这些 ORP 可以识别 TMA,并且可以在低至 10fM 的浓度下实时灵敏且选择性地检测 TMA。利用这些特性,我们不仅能够确定三种海鲜(牡蛎、虾和龙虾)的质量,而且还能够在无需任何预处理过程的情况下,将变质的海鲜与其他类型的变质食品区分开来。特别是,使用小的合成肽而不是整个蛋白质,使得 PRBN 可以通过单一的制造步骤简单地制造出来,并且由于不需要脂质双层,因此可以重复使用,具有很高的重现性。此外,由于 PRBN 是在便携式规模上制造的,因此它在需要现场测量海鲜质量的食品工业中非常有用。