Peng Yage, Zhang Dongdong, Li Yan, Qi Honglan, Gao Qiang, Zhang Chengxiao
Key Laboratory of Applied Surface and Colloid Chemistry (Shaanxi Normal University), Ministry of Education, School of Chemistry and Materials Science, Shaanxi Normal University, Xi'an, 710062, PR China.
Biosens Bioelectron. 2009 Sep 15;25(1):94-9. doi: 10.1016/j.bios.2009.06.001. Epub 2009 Jun 10.
A label-free and sensitive faradic impedance spectroscopy (FIS) aptasensor based on target-induced aptamer displacement was developed for the determination of lysozyme as a model system. The aptasensor was fabricated by self-assembling the partial complementary single strand DNA (pcDNA)-lysozyme binding aptamer (LBA) duplex on the surface of a gold electrode. To measure lysozyme, the change in interfacial electron transfer resistance of the aptasensor using a redox couple of Fe(CN)(6) as the probe was monitored. The introduction of target lysozyme induced the displacement of the LBA from the pcDNA-LBA duplex on the electrode into the solution, decreasing the electron transfer resistance of the aptasensor. The decrease in the FIS signal is linear with the concentration of lysozyme in the range from 0.2 nM to 4.0 nM, with a detection limit of 0.07 nM. The fabricated aptasensor shows a high sensitivity, good selectivity and satisfactory regeneration. This work demonstrates that a high sensitivity of the fabricated aptasensor can be obtained using a relatively short pcDNA. This work also demonstrates that the target-induced aptamer displacement strategy is promising in the design of an electrochemical aptasensor for the determination of lysozyme with good selectivity and high sensitivity.
基于目标诱导适配体置换的无标记灵敏法拉第阻抗光谱(FIS)适配体传感器被开发用于以溶菌酶为模型体系的测定。该适配体传感器通过在金电极表面自组装部分互补单链DNA(pcDNA)-溶菌酶结合适配体(LBA)双链体来制备。为了检测溶菌酶,使用Fe(CN)(6)氧化还原对作为探针监测适配体传感器界面电子转移电阻的变化。目标溶菌酶的引入诱导LBA从电极上的pcDNA-LBA双链体置换到溶液中,降低了适配体传感器的电子转移电阻。FIS信号的降低与溶菌酶浓度在0.2 nM至4.0 nM范围内呈线性关系,检测限为0.07 nM。所制备的适配体传感器具有高灵敏度、良好的选择性和令人满意的再生性能。这项工作表明,使用相对较短的pcDNA可以获得所制备适配体传感器的高灵敏度。这项工作还表明,目标诱导适配体置换策略在设计用于测定溶菌酶的具有良好选择性和高灵敏度的电化学适配体传感器方面具有前景。