School of Environmental & Chemical Engineering, Nanchang University, 999 Xuefu Road, Nanchang, China.
Analyst. 2010 Sep;135(9):2400-7. doi: 10.1039/c0an00163e. Epub 2010 Jul 23.
We have developed a new aptamer-based chemiluminescence (CL) biosensing platform for the sequential detection of two small molecules as exemplified by adenosine and cocaine. Each biosensing platform comprises NH(2)-functionalized capture DNA immobilized on magnetic beads; this can hybridize with one end of the aptamer. A corresponding reporter DNA probe labeled with either digoxigenin or biotin on its 5'-terminus recognizes the other end of the aptamer. The target compounds adenosine or cocaine act as specific competitors to aptamer-reporter DNA binding, and the corresponding aptamers preferentially form target-aptamer complexes. This results in detachment of the reporter DNA probe from the magnetic beads, with more target molecules resulting in less reporter DNA probe remaining on the beads. Those left are sequentially detected by using substrate-resolved anti-digoxigenin-alkaline phosphatase and streptavidin-horseradish peroxidase. Experimental results confirm that this CL immunosensing platform has good sensitivity with detection limits of 5.2 x 10(-9) M and 3.2 x 10(-9) M for adenosine and cocaine, respectively. Because it is straightforward to adapt this strategy to detect a spectrum of small molecules by using different aptamers, this method may offer a new direction in designing high-performance CL aptasensors for sensitive and sequential determination of a limited number of small molecules.
我们开发了一种基于适体的新化学发光(CL)生物传感平台,用于顺序检测两种小分子,以腺苷和可卡因为例。每个生物传感平台都包含固定在磁性珠上的 NH(2)-功能化捕获 DNA;它可以与适体的一端杂交。在其 5'-末端用 digoxigenin 或生物素标记的相应报告 DNA 探针识别适体的另一端。目标化合物腺苷或可卡因作为适体-报告 DNA 结合的特异性竞争物,相应的适体优先形成靶-适体复合物。这导致报告 DNA 探针从磁性珠上脱离,更多的靶分子导致更少的报告 DNA 探针留在珠上。剩下的则通过使用底物分辨的抗 digoxigenin-碱性磷酸酶和链霉亲和素-辣根过氧化物酶进行顺序检测。实验结果证实,该 CL 免疫传感器平台具有良好的灵敏度,对腺苷和可卡因的检测限分别为 5.2 x 10(-9) M 和 3.2 x 10(-9) M。因为通过使用不同的适体很容易将这种策略适应于检测一系列小分子,所以这种方法可能为设计用于对有限数量的小分子进行灵敏和顺序测定的高性能 CL 适体传感器提供了一个新的方向。