Ma Dik-Lung, Wang Modi, He Bingyong, Yang Chao, Wang Wanhe, Leung Chung-Hang
Department of Chemistry, Hong Kong Baptist University , Hong Kong, China.
Partner State Key Laboratory of Environmental and Biological Analysis, Hong Kong Baptist University , Hong Kong, China.
ACS Appl Mater Interfaces. 2015 Sep 2;7(34):19060-7. doi: 10.1021/acsami.5b05861. Epub 2015 Aug 24.
In this study, a series of 10 in-house cyclometalated iridium(III) complexes bearing different auxiliary ligands were tested for their selectivity toward split G-quadruplex in order to construct a label-free switch-on cocaine detection platform employing a three-way junction architecture and a G-quadruplex motif as a signal output unit. Through two rounds of screening, we discovered that the iridium(III) complex 7 exhibited excellent selectivity toward the intermolecular G-quadruplex motif. A detection limit as low as 30 nM for cocaine can be achieved by this sensing approach with a linear relationship between luminescence intensity and cocaine concentration established from 30 to 300 nM. Furthermore, this sensing approach could detect cocaine in diluted oral fluid. We hope that our simple, signal-on, label-free oligonucleotide-based sensing method for cocaine using a three-way DNA junction architecture could act as a useful platform in bioanalytical research.
在本研究中,测试了一系列带有不同辅助配体的10种自制环金属化铱(III)配合物对分裂型G-四链体的选择性,以构建一个采用三链结构和G-四链体基序作为信号输出单元的无标记开启型可卡因检测平台。通过两轮筛选,我们发现铱(III)配合物7对分子间G-四链体基序表现出优异的选择性。这种传感方法对可卡因的检测限低至30 nM,在30至300 nM范围内发光强度与可卡因浓度之间建立了线性关系。此外,这种传感方法可以检测稀释后的口腔液中的可卡因。我们希望我们基于三链DNA结构的用于可卡因检测的简单、开启信号、无标记的寡核苷酸传感方法能够成为生物分析研究中的一个有用平台。