Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7615405 | Journal of Chromatography B | 2018 | 7 Pages |
Abstract
This paper reports the development of hydrophobic interaction chromatography (HIC) by synthesizing sub-2â¯Î¼m polymer packings which was packed into a chromatographic pie for fast separation of native proteins at low pressures demonstrating high efficiency. Using styrene as monomer and ethylene dimethacrylate (EDMA)as swelling agent, the polystyrene seeds with an average particle size of 0.8â¯Î¼m and monodisperse polymeric microspheres with a particle size of 1.5-5.0â¯Î¼m were synthesized through dispersion polymerization and one-step swelling method, respectively. In order to separate active proteins, the microspheres were modified to hydrophobic chromatographic packings through covalent bonding with benzene methanol. Compared with the traditional column chromatography, the sub-2â¯Î¼m polymer packings in chromatographic pie exhibited higher column efficiency for protein separation at lower column pressures, even at higher flow rates. The van Deemter curve showed that the flow rate had insignificant effect on column efficiency of chromatographic pie. Seven example proteins were clearly separated within 3â¯min at a flow rate of 10â¯mL/min. The applicability of this method was further demonstrated by the separation of human serum samples. The results indicated that this chromatographic mode can be potentially applied for the fast separation of complex active proteins, such as protein drugs from natural products.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Cong-Yu Ke, Guo-Min Lu, Wu-Juan Sun, Xun-Li Zhang,