Li Yanyan, Zhao Manru, Wang Haiyan
Anhui Key Laboratory of Chemobiosensing, College of Chemistry and Materials Science, Anhui Normal University, Wuhu, Anhui, 241000, China.
Anal Bioanal Chem. 2017 Nov;409(27):6371-6377. doi: 10.1007/s00216-017-0576-3. Epub 2017 Aug 29.
We report a label-free peptide aptamer based biosensor for highly sensitive detection of TNT which was designed with a ternary assembly layer consisting of anti-TNT peptide aptamer (peptamer), dithiothreitol (DTT), and 6-mercaptohexanol (MCH), forming Au/peptamer-DTT/MCH. A linear relationship between the change in electron transfer resistance and the logarithm of the TNT concentration from 0.44 to 18.92 pM, with a detection limit of 0.15 pM, was obtained. In comparison, the detection limit of the aptasensor with a common binary assembly layer (Au/peptamer/MCH) was 0.15 nM. The remarkable improvement in the detection limit could be ascribed to the crucial role of the ternary assembly layer, providing an OH-richer hydrophilic environment and a highly compact surface layer with minimal surface defects, reducing the non-covalent binding (physisorption) of the peptamer and non-specific adsorption of TNT onto the electrode surface, leading to high sensitivity, and which can serve as a general sensing platform for the fabrication of other biosensors.
我们报道了一种基于无标记肽适配体的生物传感器,用于高灵敏度检测三硝基甲苯(TNT)。该传感器设计有一个由抗TNT肽适配体(肽适配体)、二硫苏糖醇(DTT)和6-巯基己醇(MCH)组成的三元组装层,形成Au/肽适配体-DTT/MCH。电子转移电阻的变化与TNT浓度的对数在0.44至18.92 pM之间呈线性关系,检测限为0.15 pM。相比之下,具有普通二元组装层(Au/肽适配体/MCH)的适配体传感器的检测限为0.15 nM。检测限的显著提高可归因于三元组装层的关键作用,它提供了一个富含OH的亲水环境和一个具有最小表面缺陷的高度致密表面层,减少了肽适配体的非共价结合(物理吸附)以及TNT在电极表面的非特异性吸附,从而实现了高灵敏度,并且可作为制造其他生物传感器的通用传感平台。