Department of Chemical and Environmental Engineering, University of Toledo, Toledo, OH 43606, USA.
Biosens Bioelectron. 2012 Oct-Dec;38(1):295-301. doi: 10.1016/j.bios.2012.06.005. Epub 2012 Jun 13.
A novel amperometric glucose biosensor was developed using the bio-inspired peptide nanotube (PNT) as an encapsulation template for enzymes. Horseradish peroxidase (HRP) was encapsulated by the PNT and glucose oxidase (GO(x)) was co-immobilized with the PNT on a gold nanoparticle (AuNP)-modified electrode. A binary SAM of 3-mercaptopropionic acid (MPA) and 1-tetradecanethiol (TDT) was formed on the surface of the electrode to immobilize the PNT and GO(x). The resulting electrode appeared to provide the enzymes with a biocompatible nanoenvironment as it sustained the enhanced enzyme activity for an extended time and promoted possible direct electron transfer through the PNT to the electrode. Performance of the biosensor was evaluated in terms of its detection limit, sensitivity, pH, response time, selectivity, reproducibility, and stability in a lab setting. In addition the sensor was tested for real samples. The composite of AuNP-SAM-PNT/HRP-GO(x) to fabricate a sensor electrode in this study exhibited a linear response with glucose in the concentration range of 0.5-2.4mM with a R(2)-value of 0.994. A maximum sensitivity of 0.3 mA M(-1)and reproducibility (RSD) of 1.95% were demonstrated. The PNT-encapsulated enzyme showed its retention of >85% of the initial current response after one month of storage.
一种新型的安培葡萄糖生物传感器是利用仿生肽纳米管(PNT)作为酶的封装模板开发的。辣根过氧化物酶(HRP)被 PNT 包裹,葡萄糖氧化酶(GO(x))与 PNT 一起共固定在金纳米粒子(AuNP)修饰的电极上。在电极表面形成了 3-巯基丙酸(MPA)和 1-十四硫醇(TDT)的二元自组装单分子层(SAM),以固定 PNT 和 GO(x)。所得电极似乎为酶提供了一个生物相容的纳米环境,因为它延长了酶的增强活性时间,并通过 PNT 促进了可能的直接电子转移到电极。在实验室环境中,根据检测限、灵敏度、pH 值、响应时间、选择性、重现性和稳定性来评估生物传感器的性能。此外,还对传感器进行了实际样品的测试。在这项研究中,将 AuNP-SAM-PNT/HRP-GO(x)复合材料用于制备传感器电极,在 0.5-2.4mM 的浓度范围内,葡萄糖表现出线性响应,R(2)值为 0.994。最大灵敏度为 0.3 mA M(-1),重现性(RSD)为 1.95%。封装酶的 PNT 显示出在储存一个月后,其初始电流响应保留了超过 85%。