DocumentCode :
49410
Title :
A Surface-Stress-Based Microcantilever Aptasensor
Author :
Yang Choon Lim ; Kouzani, Abbas Z. ; Wei Duan ; Dai, Xiujuan J. ; Kaynak, Akif ; Mair, Douglas
Author_Institution :
Sch. of Eng., Deakin Univ., Waurn Ponds, VIC, Australia
Volume :
8
Issue :
1
fYear :
2014
fDate :
Feb. 2014
Firstpage :
15
Lastpage :
24
Abstract :
Biosensors based on microcantilevers convert biological recognition events into measurable mechanical displacements. They offer advantages such as small size, low sample volume, label-free detection, ease of integration, high-throughput analysis, and low development cost. The design and development of a microcantilever-based aptasensor employing SU-8 polymer as the fabrication material is presented in this paper. Aptamers are employed as bioreceptor elements because they exhibit superior specificity compared to antibodies due to their small size and physicochemical stability. To immobilise thrombin DNA aptamer on the bare SU-8 surface of the aptasensor, a combined plasma mode treatment method is implemented which modifies the surface of the aptasensor. Label-free detection of thrombin molecules using the fabricated aptasensor is successfully demonstrated. The measured deflection is one order of magnitude higher than that of a silicon nitride microcantilever biosensor. The developed aptasensor also demonstrates high specificity.
Keywords :
DNA; biochemistry; biosensors; cantilevers; micromechanical devices; molecular biophysics; plasma instability; polymers; surface treatment; SU-8 surface polymer; biological recognition; bioreceptor elements; biosensors; high-throughput analysis; label-free detection; low sample volume; mechanical displacements; plasma mode treatment method; surface modification; surface-stress-based microcantilever aptasensor; thrombin DNA aptamer; thrombin molecules; Biomedical optical imaging; Laser beams; Optical device fabrication; Plasmas; Structural beams; Surface cleaning; Aptasensor; SU-8; label-free; microcantilever; optical;
fLanguage :
English
Journal_Title :
Biomedical Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1932-4545
Type :
jour
DOI :
10.1109/TBCAS.2013.2286255
Filename :
6702518
Link To Document :
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