DocumentCode :
3560206
Title :
Giant Magnetoresistive Sensors for DNA Microarray
Author :
Xu, Liang ; Yu, Heng ; Han, Shu-Jen ; Osterfeld, Sebastian ; White, Robert L. ; Pourmand, Nader ; Wang, Shan X.
Author_Institution :
Dept. of Mater. Sci. & Eng., Stanford Univ., Stanford, CA
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
3989
Lastpage :
3991
Abstract :
Giant magnetoresistive (GMR) sensors are developed for a DNA microarray. Compared with the conventional fluorescent sensors, GMR sensors are cheaper, more sensitive, can generate fully electronic signals, and can be easily integrated with electronics and microfluidics. The GMR sensor used in this work has a bottom spin valve structure with an MR ratio of 12%. The single-strand target DNA detected has a length of 20 bases. Assays with DNA concentrations down to 10 pM were performed, with a dynamic range of three logs. A double modulation technique was used in signal detection to reduce the 1/f noise in the sensor while circumventing electromagnetic interference. The logarithmic relationship between the magnetic signal and the target DNA concentration can be described by the Temkin isotherm. Furthermore, GMR sensors integrated with microfluidics has great potential of improving the sensitivity to 1 pM or below, and the total assay time can be reduced to less than 1 h .
Keywords :
DNA; biochemistry; biomagnetism; biosensors; giant magnetoresistance; magnetic sensors; microfluidics; molecular biophysics; spin valves; DNA microarray; GMR; Temkin isotherm; biosensors; conventional fluorescent sensors; double modulation technique; electromagnetic interference; electronic signals; giant magnetoresistive sensors; magnetic signal; microfluidics; single-strand DNA concentration; spin valve structure; Biosensor; DNA microarray; giant magnetoresistive sensor; microfluidics; spin valve;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2002795
Filename :
4717555
Link To Document :
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