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A parametric study of a monolithic microfluidic system for on-chip biomolecular separation

Version 2 2024-06-06, 11:40
Version 1 2014-01-01, 00:00
journal contribution
posted on 2024-06-06, 11:40 authored by AS Chan, MK Danquah, D Agyei, PG Hartley, Y Zhu
A microfabricated poly(dimethylsiloxane) (PDMS) chip containing channel filled with polymer monolith has been developed for on-chip biomolecule separation. Methacrylate monolithic polymers were prepared by photo-initiated polymerization within the channel to serve as a continuous stationary phase. The monolithic polymer was functionalized with a weak anion-exchange ligand, and key parameters affecting the binding characteristics of the system were investigated. The total binding capacity was unaffected by the flow rate of the mobile phase but varied significantly with changes in ionic strength and pH of the binding buffer. The binding capacity decreased with increasing buffer ionic strength, and this is due to the limited available binding sites for protein adsorption resulting from cationic shielding effect. Similarly, the binding capacity decreased with decreasing buffer pH towards the isoelectric point of the protein. A protein mixture, BSA and ovalbumin, was used to illustrate the capacity of the methacrylate-based microfluidic chip for rapid biomolecule separation.

History

Related Materials

Location

Abingdon, Eng.

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Copyright notice

2014, Taylor and Francis

Journal

Separation science and technology

Volume

49

Pagination

854-860

ISSN

0149-6395

eISSN

1520-5754

Issue

6

Publisher

Taylor and Francis