Yuan Jipei, Guo Weiwei, Yang Xiurong, Wang Erkang
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Changchun, Jilin 130022, China.
Anal Chem. 2009 Jan 1;81(1):362-8. doi: 10.1021/ac801533u.
A sensing system based on the photoinduced electron transfer of quantum dots (QDs) was designed to measure the interaction of anticancer drug and DNA, taking mitoxantrone (MTX) as a model drug. MTX adsorbed on the surface of QDs can quench the photoluminescence (PL) of QDs through the photoinduced electron-transfer process; and then the addition of DNA will bring the restoration of QDs PL intensity, as DNA can bind with MTX and remove it from QDs. Sensitive detection of MTX with the detection limit of 10 nmol L(-1) and a linear detection range from 10 nmol L(-1) to 4.5 micromol L(-1) was achieved. The dependence of PL intensity on DNA amount was successfully utilized to investigate the interactions between MTX and DNA. Both the binding constants and the sizes of binding site of MTX-DNA interactions were calculated based on the equations deduced for the PL recovery process. The binding constant obtained in our experiment was generally consistent with previous reports. The sensitive and speedy detection of MTX as well as the avoidance of modification or immobilization process made this system suitable and promising in the drug-DNA interaction studies.
设计了一种基于量子点(QD)光致电子转移的传感系统,以米托蒽醌(MTX)为模型药物来测量抗癌药物与DNA的相互作用。吸附在量子点表面的MTX可通过光致电子转移过程猝灭量子点的光致发光(PL);然后加入DNA会使量子点的PL强度恢复,因为DNA能与MTX结合并将其从量子点上除去。实现了对MTX的灵敏检测,检测限为10 nmol L(-1),线性检测范围为10 nmol L(-1)至4.5 μmol L(-1)。成功利用PL强度对DNA量的依赖性来研究MTX与DNA之间的相互作用。基于为PL恢复过程推导的方程计算了MTX-DNA相互作用的结合常数和结合位点大小。我们实验中获得的结合常数与先前的报道基本一致。MTX的灵敏快速检测以及避免修饰或固定过程使得该系统在药物-DNA相互作用研究中适用且前景广阔。