Title :
Ultrasensitive detection of nanoparticle-based bio bar-code DNA sensor by using nano-gap electrodes
Author :
Chang, Tien-Li ; Tsai, Chien-Ying ; Uppala, Ramesh ; Chen, Chun-Chi ; Lin, Chun-Hung ; Chen, Ping-Hei
Author_Institution :
Dept. of Mech. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Abstract :
An ultra sensitive approach to detect the sub femtomolar DNA by using electrical detection method on a DNA biochip has been developed. The system provides high selectivity with sensitivity which is comparable to nano-gap-electrode detection approaches without the need of PCR amplification. Because bio-bar-code DNA approach is a pseudohomogeneous system with both magnetic nanoparticles and gold nanoparticles in solution, low concentration of the probes can be used very efficiently to bind target DNA, thereby reducing time required for high sensitivity detection experiments. Indeed, an advantage of the bio-bar-code DNA approach over conventional microarray sandwich assembly assays is that the entire self-assembly assay can be carried out in sub femtomolar concentration, regardless of target concentration. The system has an excellent dynamic range and is ideally set up for multiplexing.
Keywords :
biosensors; electrodes; magnetic particles; nanoparticles; DNA biochip; DNA sensor; electrical detection; gold nanoparticles; magnetic nanoparticles; nano-gap electrodes; nanoparticle-based bio bar-code; pseudohomogeneous system; self-assembly assay; sub femtomolar DNA; sub femtomolar concentration; ultrasensitive detection; Assembly; Biosensors; DNA; Electrodes; Gold; Laboratories; Nanoparticles; Nanoscale devices; Probes; Self-assembly; Bio-bar-code DNA detection; DNA biochip; Electrical Detection; Gold nanoparticles; Magnetic nanoparticles; Self-assembly;
Conference_Titel :
Microprocesses and Nanotechnology Conference, 2005 International
Print_ISBN :
4-9902472-2-1
DOI :
10.1109/IMNC.2005.203812