Park Keun-Yong, Sohn Young-Soo, Kim Chang-Kyu, Kim Hong-Seok, Bae Young-Seuk, Choi Sie-Young
School of Electrical Engineering & Computer Science, Kyungpook National University, 1370 Sankyuk-dong, Buk-gu, Daegu 702-701, Republic of Korea.
Biosens Bioelectron. 2008 Jul 15;23(12):1904-7. doi: 10.1016/j.bios.2008.03.011. Epub 2008 Mar 22.
An albumin biosensor based on a potentiometric measurement using Biofield-effect-transistor (BioFET) has been designed and fabricated, and its characteristics were investigated. The BioFET was fabricated using semiconductor integrated circuit (IC) technology. The gate surface of the BioFET was chemically modified by newly developed self-assembled monolayer (SAM) synthesized by a thiazole benzo crown ether ethylamine (TBCEA)-thioctic acid to immobilize anti-albumin. SAM formation, antibody immobilization, and antigen-antibody interaction were verified using surface plasmon resonance (SPR). The output voltage changes of the BioFET with respect to various albumin concentrations were obtained. Quasi-reference electrode (QRE) and reference FET (ReFET) has been integrated with the BioFET, and its output characteristic was investigated. The results demonstrate the feasibility of the BioFET as the albumin sensor for diagnosing nephritis.
一种基于使用生物场效应晶体管(BioFET)进行电位测量的白蛋白生物传感器已被设计和制造,并对其特性进行了研究。该BioFET采用半导体集成电路(IC)技术制造。BioFET的栅极表面通过由噻唑苯并冠醚乙胺(TBCEA)-硫辛酸合成的新开发的自组装单分子层(SAM)进行化学修饰,以固定抗白蛋白。使用表面等离子体共振(SPR)验证了SAM的形成、抗体固定以及抗原-抗体相互作用。获得了BioFET相对于各种白蛋白浓度的输出电压变化。准参比电极(QRE)和参比场效应晶体管(ReFET)已与BioFET集成,并对其输出特性进行了研究。结果证明了BioFET作为诊断肾炎的白蛋白传感器的可行性。