Capillary zone electrophoresis of amino acids on a hybrid poly(dimethylsiloxane)-glass chip

被引:25
作者
Mourzina, YL [1 ]
Steffen, A
Kalyagin, D
Carius, R
Offenhäusser, A
机构
[1] Res Ctr Julich, Inst Thin Films & Interfaces, D-52425 Julich, Germany
[2] St Petersburg State Univ, Fac Chem, St Petersburg, Russia
[3] Res Ctr Julich, Inst Photovolta, Julich, Germany
关键词
amino acid; capillary zone electrophoresis; electroosmotic flow; miniaturization; poly(dimethylsiloxane)-glass chip;
D O I
10.1002/elps.200410295
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Poly(dimethylsiloxane) (PDMS)-PDMS and hybrid PDMS-glass devices have been characterized and compared in terms of current-voltage linearity, contact angle, electroosmotic velocity, electroosmotic mobility, and electrokinetic potential in dependence on the surface treatment. The hybrid PDMS-glass microfluidic devices have further been tested as on-chip capillary electrophoresis systems for the separation of fluorescently labeled amino acids. It has been demonstrated that different methods of surface pretreatment of the PDMS-glass devices result in significantly different separation performance, with plate numbers varying from 650 to 57000 in dependence on the surface state and the nature of the amino acids. Electrophoretic separations of amino acids have been achieved within tens of seconds with detection limits of less than 2 mu M (similar to 2 x 10(-16) to 2.5 x 10(-16) mol quantities at injection volumes of 110120 pL). The detected amounts of fluorescein isothiocyante (FITC)-amino acids are at least ten times lower, since the amino acid:FITC ratio is 10:1 mol. The results demonstrate the perspective of such hybrid PDMS-glass microfluidic systems and the methods to modify their surfaces for on-chip separation methods for biomolecules.
引用
收藏
页码:1849 / 1860
页数:12
相关论文
共 55 条
[21]  
HIA Y, 1998, ANNU REV MATER SCI, V28, P153
[22]   Hydrophobicity recovery of polydimethylsiloxane after exposure to corona discharges [J].
Hillborg, H ;
Gedde, UW .
POLYMER, 1998, 39 (10) :1991-1998
[23]   HIGH-PERFORMANCE ELECTROPHORESIS - ELIMINATION OF ELECTROENDOSMOSIS AND SOLUTE ADSORPTION [J].
HJERTEN, S .
JOURNAL OF CHROMATOGRAPHY, 1985, 347 (02) :191-198
[24]   Cross-linked coatings for electrophoretic separations in poly(dimethylsiloxane) microchannels [J].
Hu, SW ;
Ren, XQ ;
Bachman, M ;
Sims, CE ;
Li, GP ;
Allbritton, N .
ELECTROPHORESIS, 2003, 24 (21) :3679-3688
[25]   CURRENT-MONITORING METHOD FOR MEASURING THE ELECTROOSMOTIC FLOW-RATE IN CAPILLARY ZONE ELECTROPHORESIS [J].
HUANG, XH ;
GORDON, MJ ;
ZARE, RN .
ANALYTICAL CHEMISTRY, 1988, 60 (17) :1837-1838
[26]  
Issaq HJ, 1999, ELECTROPHORESIS, V20, P1533, DOI 10.1002/(SICI)1522-2683(19990601)20:7<1533::AID-ELPS1533>3.0.CO
[27]  
2-V
[28]   CAPILLARY ZONE ELECTROPHORESIS [J].
JORGENSON, JW ;
LUKACS, KD .
SCIENCE, 1983, 222 (4621) :266-272
[29]   Comparison of the performance characteristics of poly(dimethylsiloxane) and Pyrex microchip electrophoresis devices for peptide separations [J].
Lacher, NA ;
de Rooij, NF ;
Verpoorte, E ;
Lunte, SM .
JOURNAL OF CHROMATOGRAPHY A, 2003, 1004 (1-2) :225-235
[30]  
Lichtenberg J, 2001, ELECTROPHORESIS, V22, P258, DOI 10.1002/1522-2683(200101)22:2<258::AID-ELPS258>3.0.CO