Uygun Aysegul
Suleyman Demirel University, Faculty of Arts and Science, Department of Chemistry, 32260 Isparta, Turkey.
Talanta. 2009 Jul 15;79(2):194-8. doi: 10.1016/j.talanta.2009.03.049. Epub 2009 Apr 1.
A simple and label-free electrochemical sensor for recognition of the DNA sensor event was prepared by electrochemical polymerization of 4-hydroxyphenyl thiophene-3-carboxylate. Poly(4-hydroxyphenyl thiophene-3-carboxylate) (PHPT) was synthesized electrochemically onto glassy carbon electrode and characterized by cyclic voltammetry, FTIR and AFM measurements. An ODN-probe was physisorbed onto PHPT film and tested on hybridization with complementary ODN segments. A biological recognition can be monitored by comparison with electrochemical signal (cyclic voltammogram) of single and double strand state oligonucleotide. The oxidation current of double strand state oligonucleotide is lower than that of single strand, that is corresponding to the decrease of electroactivity of PHPT with the increase of stiffness of polymer structure. Physisorbed ODN-probe and its hybridization were observed morphologically onto ITO electrodes using AFM. The sensitivity of the electrochemical sensor is 0.02 microA/nmol, detection limit is 1.49 nmol and it has good selectivity.
通过4-羟基苯基噻吩-3-羧酸盐的电化学聚合制备了一种用于识别DNA传感器事件的简单且无标记的电化学传感器。聚(4-羟基苯基噻吩-3-羧酸盐)(PHPT)在玻碳电极上电化学合成,并通过循环伏安法、傅里叶变换红外光谱和原子力显微镜测量进行表征。将ODN探针物理吸附到PHPT膜上,并测试其与互补ODN片段的杂交情况。通过与单链和双链状态寡核苷酸的电化学信号(循环伏安图)进行比较,可以监测生物识别过程。双链状态寡核苷酸的氧化电流低于单链,这对应于随着聚合物结构刚度的增加,PHPT的电活性降低。使用原子力显微镜在ITO电极上从形态学角度观察了物理吸附的ODN探针及其杂交情况。该电化学传感器的灵敏度为0.02微安/纳摩尔,检测限为1.49纳摩尔,并且具有良好的选择性。