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  4. Precise sample positioning for multipoint immunoassay using nanofluidic preconcentrator
 
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Precise sample positioning for multipoint immunoassay using nanofluidic preconcentrator

Journal
2011 16th International Solid-State Sensors, Actuators and Microsystems Conference, TRANSDUCERS'11
Pages
2239 - 2242
Date Issued
2011-06
Author(s)
B. P. Liao
KUNG-BIN SUNG  
WEI-CHENG TIAN 
DOI
10.1109/TRANSDUCERS.2011.5969340
URI
http://scholars.lib.ntu.edu.tw/handle/123456789/366634
https://www.scopus.com/inward/record.uri?eid=2-s2.0-80052128547&doi=10.1109%2fTRANSDUCERS.2011.5969340&partnerID=40&md5=107d41f3879f98c40981dea454c8daba
Abstract
In this paper, we design, fabricate and package a novel micro/nanofluidic biochip that combines the high rate sample preconcentration and the precise positioning of the concentrated sample to achieve a highly sensitive detection and a multipoint sensing of protein biomarkers. To apply the preconcentrator to the immunoassay, thin layers of Au which provide sensing areas for antibody immobilization and antibody-antigen binding are sputtered. In order to overcome the limitation of diffusion on the sensitivity of immunoassay and show the significance of this manipulation capability, we preconcentrate the antigen near the nanofluidic channels and then move the preconcentrated band to the site of binding. This protocol greatly enhances the antibody-antigen interaction and thus increases the intensity of the signal. Therefore, sensitivity of our device can be significantly improved without an impractically long period of incubation (From typically > 1 hour to < 10 minutes) to achieve the detection limit. © 2011 IEEE.
Event(s)
2011 16th International Solid-State Sensors, Actuators and Microsystems Conference, TRANSDUCERS'11
Subjects
immunoassay; micro/nanofluidic biochip; multipoint sensing; preconcentration; sample positioning
Other Subjects
immunoassay; micro/nanofluidic biochip; Multi-point sensing; Pre-concentration; sample positioning; Actuators; Antibodies; Immunology; Microsystems; Nanofluidics; Solid-state sensors; Antigens
Type
conference paper

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