Electrical frequency dependent characterization of DNA hybridization

被引:47
作者
Gheorghe, M
Guiseppi-Elie, A
机构
[1] Virginia Commonwealth Univ, Dept Chem Engn, Richmond, VA 23284 USA
[2] Virginia Commonwealth Univ, Ctr Bioelect Biosensors & Biochips C3B, Richmond, VA 23284 USA
关键词
electrochemical impedance spectroscopy; quartz crystal microbalance; DNA hybridization; silanes; oligonucleotides; DNA; microarrays;
D O I
10.1016/S0956-5663(03)00179-9
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The hybridization of oligomeric DNA was investigated using the frequency dependent techniques of electrochemical impedance spectroscopy (EIS) and quartz crystal microgravimetry (QCM). Synthetic 5'-amino terminated single stranded oligonucleotides (ssDNA) were attached to the exposed glass surface between the digits of microlithographically fabricated interdigitated microsensor electrodes using 3-glycidoxypropyl-trimethoxysilane. Similar ssDNA immobilization was achieved to the surface of the gold driving electrodes of AT-cut quartz QCM crystals using 3-mercaptopropyl-trimethoxysilane. Significant changes in electrochemical impedance values (both real and imaginary components) (11% increase in impedance modulus at 120 Hz) and resonant frequency values (0.004% decrease) were detected as a consequence of hybridization of the bound ssDNA upon exposure to its complement under hybridization conditions. Non-complementary (random) sequence sowed a modest decrease in impedance and a non-detectable change in resonant frequency. The possibility to detect the binding state of DNA in the vicinity of an electrode, without a direct connection between the measurement electrode and the DNA, has been demonstrated. The potential for development of label-free, low density DNA microarrays is demonstrated and is being pursued. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:95 / 102
页数:8
相关论文
共 53 条
[41]  
Tribut Olivier, 2002, Med Sci Monit, V8, pRA152
[42]   Nanoscaled interdigitated electrode arrays for biochemical sensors [J].
Van Gerwen, P ;
Laureyn, W ;
Laureys, W ;
Huyberechts, G ;
De Beeck, MO ;
Baert, K ;
Suls, J ;
Sansen, W ;
Jacobs, P ;
Hermans, L ;
Mertens, R .
SENSORS AND ACTUATORS B-CHEMICAL, 1998, 49 (1-2) :73-80
[43]  
VanGerwen P, 1997, TRANSDUCERS 97 - 1997 INTERNATIONAL CONFERENCE ON SOLID-STATE SENSORS AND ACTUATORS, DIGEST OF TECHNICAL PAPERS, VOLS 1 AND 2, P907, DOI 10.1109/SENSOR.1997.635249
[44]   DNA biochip using a phototransistor integrated circuit [J].
Vo-Dinh, T ;
Alarie, JP ;
Isola, N ;
Landis, D ;
Wintenberg, AL ;
Ericson, MN .
ANALYTICAL CHEMISTRY, 1999, 71 (02) :358-363
[45]   Development of a DNA biochip: principle and applications [J].
Vo-Dinh, T .
SENSORS AND ACTUATORS B-CHEMICAL, 1998, 51 (1-3) :52-59
[46]   Flow detection of nucleic acids at a conducting polymer-modified electrode [J].
Wang, J ;
Jiang, M ;
Mukherjee, B .
ANALYTICAL CHEMISTRY, 1999, 71 (18) :4095-4099
[47]   Controlled release of DNA from carbon-paste microelectrodes [J].
Wang, J ;
Zhang, XJ ;
Parrado, C ;
Rivas, G .
ELECTROCHEMISTRY COMMUNICATIONS, 1999, 1 (06) :197-202
[48]   Carbon fiber microelectrodes for adsorptive stripping analysis of trace nucleic acids [J].
Wang, J ;
Cai, XH ;
Fernandes, JR ;
Grant, DH ;
Ozsoz, M .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1998, 441 (1-2) :167-172
[49]   Adsorptive stripping potentiometry of DNA at electrochemically pretreated carbon paste electrodes [J].
Wang, J ;
Cai, XH ;
Jonsson, C ;
Balakrishnan, M .
ELECTROANALYSIS, 1996, 8 (01) :20-24
[50]   Monitoring DNA immobilization and hybridization on surfaces by atomic force microscopy force measurements [J].
Wang, J ;
Bard, AJ .
ANALYTICAL CHEMISTRY, 2001, 73 (10) :2207-2212