Jeong Hee-Jin, Dong Jinhua, Yeom Chang-Hun, Ueda Hiroshi
Department of Biological and Chemical Engineering, Hongik University, 2639 Sejong-ro, Jochiwon-eup, Sejong-si 30016, Korea.
Department of Chemical System Engineering, Hongik University, 2639 Sejong-ro, Jochiwon-eup, Sejong-si 30016, Korea.
Methods Protoc. 2020 Jun 11;3(2):43. doi: 10.3390/mps3020043.
The problem of illicit drug use and addiction is an escalating issue worldwide. As such, fast and precise detection methods are needed to help combat the problem. Herein, the synthesis method for an anti-methamphetamine Quenchbody (Q-body), a promising sensor for use in simple and convenient assays, has been described. The fluorescence intensity of the Q-body generated by two-site labeling of produced anti-methamphetamine antigen-binding fragment (Fab) with TAMRA-C2-maleimide dyes increased 5.1-fold over background in the presence of a hydroxyl methamphetamine derivative, 3-[(2S)-2-(methylamino)propyl]phenol. This derivative has the closest structure to methamphetamine of the chemicals available for use in a laboratory. Our results indicate the potential use of this Q-body as a novel sensor for the on-site detection of methamphetamine, in such occasions as drug screening at workplace, suspicious substance identification, and monitoring patients during drug rehabilitation.
非法药物使用和成瘾问题在全球范围内日益严重。因此,需要快速且精确的检测方法来帮助解决这一问题。在此,本文描述了一种抗甲基苯丙胺淬灭体(Q体)的合成方法,它是一种有望用于简单便捷检测的传感器。用TAMRA-C2-马来酰亚胺染料对产生的抗甲基苯丙胺抗原结合片段(Fab)进行双位点标记所产生的Q体,在存在羟基甲基苯丙胺衍生物3-[(2S)-2-(甲氨基)丙基]苯酚的情况下,其荧光强度比背景增加了5.1倍。这种衍生物在可用于实验室的化学物质中与甲基苯丙胺的结构最为接近。我们的结果表明,这种Q体有潜力作为一种新型传感器,用于在工作场所药物筛查、可疑物质识别以及药物康复期间对患者进行监测等场合现场检测甲基苯丙胺。