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research article

Electrokinetically driven microfluidic chips with surface-modified chambers for heterogeneous immunoassays

Dodge, A.
•
Fluri, K.
•
Verpoorte, E.
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2001
Analytical Chemistry

This article presents the first example of a microfluidic chip for heterogeneous bioassays using a locally immobilized biospecitic layer and operated electrokinetically. The reaction chamber has picoliter dimensions and is integrated into a network of microchannels etched in glass. The high affinity of protein A (PA) for rabbit immunoglobulin G (rIgG) was exploited for chip testing, with PA being immobilized on microchannel walls and fluorescently labeled (CyS) rIgG serving as sample. It was possible to operate the chip in an immunoaffnity chromatographic manner, using electrokinetically pumped solutions. Concentration of antibody from dilute solution onto the solid phase was demonstrated, with signal gains of ∼30 possible. A dose-response curve for Cy5-rIgG was obtained for concentrations down to 50 nM, for an incubation time of 200 s. The flexibility of chip layout was demonstrated for competitive immunoassay of rIgG, using both a combined sample/tracer incubation and sequential addition of these solutions. With assay times generally below 5 rain for this unoptimized device, the microfluidic approach described shows great potential for many high-throughput screening applications.

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Type
research article
DOI
10.1021/ac0015366
Author(s)
Dodge, A.
Fluri, K.
Verpoorte, E.
de Rooij, N. F.  
Date Issued

2001

Published in
Analytical Chemistry
Volume

73

Issue

14

Start page

3400

End page

3409

Note

265

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
SAMLAB  
Available on Infoscience
May 12, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/39209
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