Research Article

Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization

Volume: 38 Number: 4 December 8, 2017
EN TR

Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization

Abstract

In the first part of the two-part study, the column packed materials in the form of monodisperse and porous particles were synthesized with regard to test their column performances in Reverse Phase Chromatography (RPC). Particles in the form of poly(vinyl acetate-co-divinylbenzene) [poly(VAc-co-DVB)] and poly(divinylbenzene) [poly(DVB)] were produced by “multi-stage micro-suspension polymerization”. The surface of particles were converted to “hydroxyl” form by base hydrolysis that were used as poly(vinylalcohol-co-divinylbenzene) [poly(VA-co-DVB)] particles, having appropriate structural properties like surface and porosity for chromatographic applications. Particle characterization was assessed by Scanning Electron Microscopy (SEM), BET surface area and porosity measurement system and Fourier Transform Infrared Spectroscopy (FTIR).

Keywords

Monodisperse-Porous Particle,Multi-Stage Micro-Suspension Polymerization,Column Packed Material,Column Packed Material

References

  1. [1]. Camlı S.T., Şenel S., Tuncel A., Cibacron Blue F3G-A Attached Uniform and Macroporous Poly(styrene-divinlybenzene) Particles For Specific Albumin Adsorption. J. Biomater. Sci. Polym., 1999, 8, 875-889.
  2. [2]. Ellingsten T., Aune O., Ugelstad J., Hagen S., Mono-sized Stationary Phases for Chromatography, Journal of Chromatography A, 1990, 535, 147-161.
  3. [3]. Galia M., Svec F., Fréchet J.M.J., Monodisperse Polymer Beads as Packing Material for High-performance Liquid Chromatography. Effect of Divinylbenzene Content on the Porous and Chromatographic Properties of Poly(styrene-co-divinylbenzene) Beads Prepared in Presence of Linear Polystyrene as a Porogen, J. Polym. Sci., Polym. Chem., 1994, 32, 2169-2175
  4. [4]. Hossoya K., Teramachi M., Tanaka N., Kobayashi A., Kanda T., Ohtsu Y., Preparation Strategy for Uniformly Sized, Polymer-Beads HPLC Packing Materials Having Practically Acceptable Column Efficiency. 1. Copolymerization Technique, Anal. Chem., 2001, 73(24), 5852-5857
  5. [5]. Lewandowski K., Svec F., Frechet J.M.J., Polar, A Novel Polar Seperation Medium For The Size Exclusion Chromatography of Small Molecules: Uniformly Sized, Porous Poly(vinylphenol-co-divinylbenzene) Beads, J. Liq. Chrom. & Rel. Technol., 1997, 20, 227-243
  6. [6]. Smigol V., Svec F., Frechet J.M.J., 2-Dimensional High-Performance Liquid-Chromatography Using Monodisperse Polymer Beads Containing Segregated Chemistries Prepared By Pore-Size Specific Functionalization-Single-Column Combinations of Size Exclusion Or İon-Exchange With Reversed-Phase Chromatography, Analytical Chemistry, 1994, 66 (23), 4308-4315
  7. [7]. Smigol V., Svec F., Frechet J.M.J., High-Performance Liquid Chromatography of Complex mixtures Using Monodisperse Dual- Chemistry Polymer Beads Prepared by a Pore-Size-Specific Functionalization Process. A Single Column Combination of Hydrophobic Interaction and Reversed-Phase Chromatography, Analytical Chemistry, 1994, 66(13), 2129-2138
  8. [8]. Unsal E., Durdu A., Elmas B., Tuncel M., Tuncel A., A New Affinity-HPLC Packing For Protein Separation: Cibacron Blue Attached Uniform-Porous Poly(HEMA-co-EDM) Beads, Analytical and Bioanalytical Chemistry, 2005, 383, 930-937
  9. [9]. Unsal E., Irmak T., Durusoy E., Tuncel M., Tuncel, A., Monodisperse porous particles with polyionic ligands for ion exchange separation of proteins, Analytical Chimica Acta, 2006, 570, 240-248
  10. [10]. Ettre L.S., Chromatography: the Separation Technique of the 20th Century. Chromatographia, 2000, 51 (1/2), 7-17
APA
Saraçoğlu Kaya, B., & Sağ, E. (2017). Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization. Cumhuriyet Science Journal, 38(4), 788-797. https://doi.org/10.17776/csj.349325
AMA
1.Saraçoğlu Kaya B, Sağ E. Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization. CSJ. 2017;38(4):788-797. doi:10.17776/csj.349325
Chicago
Saraçoğlu Kaya, Berna, and Ebru Sağ. 2017. “Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization”. Cumhuriyet Science Journal 38 (4): 788-97. https://doi.org/10.17776/csj.349325.
EndNote
Saraçoğlu Kaya B, Sağ E (December 1, 2017) Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization. Cumhuriyet Science Journal 38 4 788–797.
IEEE
[1]B. Saraçoğlu Kaya and E. Sağ, “Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization”, CSJ, vol. 38, no. 4, pp. 788–797, Dec. 2017, doi: 10.17776/csj.349325.
ISNAD
Saraçoğlu Kaya, Berna - Sağ, Ebru. “Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization”. Cumhuriyet Science Journal 38/4 (December 1, 2017): 788-797. https://doi.org/10.17776/csj.349325.
JAMA
1.Saraçoğlu Kaya B, Sağ E. Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization. CSJ. 2017;38:788–797.
MLA
Saraçoğlu Kaya, Berna, and Ebru Sağ. “Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization”. Cumhuriyet Science Journal, vol. 38, no. 4, Dec. 2017, pp. 788-97, doi:10.17776/csj.349325.
Vancouver
1.Berna Saraçoğlu Kaya, Ebru Sağ. Design of Reversed Phase Chromatography (RPC) Column Packing Material for Protein Separation: Part 1- Synthesis and Characterization. CSJ. 2017 Dec. 1;38(4):788-97. doi:10.17776/csj.349325