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Mechanism for the separation of large molecules based on radial migration in capillary electrophoresis

Authors :
Zheng, Jinjian
Yeung, Edward S.
Source :
Analytical Chemistry. August 1, 2003, Vol. 75 Issue 15, p3675, 6 p.
Publication Year :
2003

Abstract

We demonstrate a novel separation mechanism for large molecules based on their radial migration in capillary electrophoresis with applied hydrodynamic flow (HDF). The direction of radial migration depends on the direction of the applied HDF relative to the electric field. The radial migration velocities are size-dependent, which could be attributed to the different degree of deformation under shear flow. Analytical separation was demonstrated on a sample plug containing [lambda] DNA (48 502 bp) and [phi]X174 RF DNA (5386 bp) with baseline separation. Alternatively, this separation mode can be performed continuously and is thus applicable to preparative separations. Without the need for gel/polymer or complex instrumentation, this separation technique is complementary to capillary gel electrophoresis and field-flow fractionation. Although large DNA molecules were used to demonstrate the separation mechanism here, these protocols could also be applied to the separation of proteins, cells, or particles based on size, shape, or deformability.

Details

Language :
English
ISSN :
00032700
Volume :
75
Issue :
15
Database :
Gale General OneFile
Journal :
Analytical Chemistry
Publication Type :
Academic Journal
Accession number :
edsgcl.106915065