Yan Xiluan, Cao Zhijuan, Kai Masaaki, Lu Jianzhong
School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai 201203, China.
Talanta. 2009 Jul 15;79(2):383-7. doi: 10.1016/j.talanta.2009.03.063. Epub 2009 Apr 5.
We have developed a novel sensitive chemiluminescence (CL) aptasensor for the target assay as exemplified by using adenosine as a model target. In this work, we have demonstrated the signaling mechanism to make detection based on magnetic separation and 3,4,5-trimethoxyl-phenylglyoxal (TMPG), a special CL reagent as the signaling molecule, which reacts instantaneously with guanine nucleobases (G) of adenosine-binding aptamer strands. Briefly, amino-functioned capture DNA sequences are immobilized on the surface of carboxyl-modified magnetic beads, and then hybridized with label-free G-rich (including 15 guanine nucleobases) adenosine-binding aptamer strands to form our CL aptasensor. Upon the introduction of adenosine, the aptamer on the surface of magnetic beads is triggered to make structure switching to the formation of the adenosine/aptamer complex. Consequently, G-rich aptamer strands are forced to dissociate from magnetic beads sensing interface, resulting in a decrease of CL signal. The decrement of peak signal is proportional to the amount of adenosine. The effects of the amounts of capture DNA, aptamer, magnetic beads are investigated and optimized. It was found that the CL intensity had a linear dependency on the concentration of adenosine in the range of 4x10(-7) to 1x10(-5)M. With a low detection limit of 8x10(-8)M and simplicity in CL detection, this novel technique will offer a great promise for future target/aptamer analysis.
我们开发了一种新型的灵敏化学发光(CL)适体传感器用于目标物检测,以腺苷作为模型目标物进行举例说明。在这项工作中,我们阐述了基于磁分离和3,4,5-三甲氧基苯乙二醛(TMPG,一种特殊的CL试剂作为信号分子)的检测信号机制,该试剂能与腺苷结合适体链中的鸟嘌呤碱基(G)瞬间反应。简要来说,氨基功能化的捕获DNA序列固定在羧基修饰的磁珠表面,然后与无标记的富含G(包含15个鸟嘌呤碱基)的腺苷结合适体链杂交,形成我们的CL适体传感器。引入腺苷后,磁珠表面的适体被触发进行结构转换,形成腺苷/适体复合物。因此,富含G的适体链被迫从磁珠传感界面解离,导致CL信号降低。信号峰的降低与腺苷的量成正比。研究并优化了捕获DNA、适体、磁珠用量的影响。结果发现,CL强度在4×10⁻⁷至1×10⁻⁵M的腺苷浓度范围内呈线性依赖关系。该新技术具有8×10⁻⁸M的低检测限以及CL检测的简便性,将为未来的目标物/适体分析带来巨大前景。