Wang Minghua, Zhai Shuyong, Ye Zihan, He Linghao, Peng Donglai, Feng Xiaozhong, Yang Yanqin, Fang Shaoming, Zhang Hongzhong, Zhang Zhihong
Collaborative Innovation Center of Environmental Pollution Control and Ecological Restoration, Zhengzhou University of Light Industry, No. 166, Science Avenue, Zhengzhou 450001, P. R. China.
Dalton Trans. 2015 Apr 14;44(14):6473-9. doi: 10.1039/c5dt00168d.
A sensitive aptasensor based on a nanocomposite of hollow titanium dioxide nanoball, three-dimensional reduced graphene oxide, and polypyrrole (TiO2/3D-rGO/PPy) was developed for lysozyme detection. A lysozyme aptamer was easily immobilized onto the TiO2/3D-rGO/PPy nanocomposite matrix by assembling the aptamer onto graphene through simple π-stacking interactions and electrostatic interactions between PPy molecular chains and aptamer strands. In the presence of lysozyme, the aptamer on the adsorbent layer catches the target on the electrode interface, which generates a barrier for electrons and inhibits electron transfer, subsequently resulting in decreased electrochemically differential pulse voltammetric signals of a gold electrode modified with TiO2/3D-rGO/PPy. Using this strategy, a low limit of detection of 0.085 ng mL(-1) (5.5 pM) for detecting lysozyme was observed within the detection range of 0.1-50 ng mL(-1) (0.007-3.5 nM). The aptasensor also presents high specificity for lysozyme, which is unaffected by the coexistence of other proteins. Such an aptasensor opens a rapid, selective, and sensitive route to lysozyme detection. This finding indicates that the TiO2/3D-rGO/PPy nanocomposite could be used as an electrochemical biosensor for detecting proteins in the biomedical field.
基于中空二氧化钛纳米球、三维还原氧化石墨烯和聚吡咯(TiO₂/3D-rGO/PPy)纳米复合材料构建了一种灵敏的适体传感器用于溶菌酶检测。通过简单的π-堆积相互作用以及聚吡咯分子链与适体链之间的静电相互作用,将溶菌酶适体轻松固定在TiO₂/3D-rGO/PPy纳米复合材料基质上,使适体组装到石墨烯上。在溶菌酶存在的情况下,吸附层上的适体捕获电极界面上的目标物,这会产生电子屏障并抑制电子转移,随后导致用TiO₂/3D-rGO/PPy修饰的金电极的电化学差分脉冲伏安信号降低。采用该策略,在0.1-50 ng mL⁻¹(0.007-3.5 nM)的检测范围内,检测溶菌酶的最低检测限为0.085 ng mL⁻¹(5.5 pM)。该适体传感器对溶菌酶还具有高特异性,不受其他蛋白质共存的影响。这种适体传感器为溶菌酶检测开辟了一条快速、选择性和灵敏的途径。这一发现表明,TiO₂/3D-rGO/PPy纳米复合材料可作为一种电化学生物传感器用于生物医学领域蛋白质的检测。