Adsorption Characteristics of PES-BSA Affinity Membrane Prepared by Electrospinning

전기방사로 제조된 PES-BSA 친화막의 흡착특성

  • Byun, Hong-Sik (Department of Chemical System Engineering, Keimyung University) ;
  • Hong, Byung-Pyo (Department of Chemical System Engineering, Keimyung University)
  • 변홍식 (계명대학교 화학시스템공학과) ;
  • 홍병표 (계명대학교 화학시스템공학과)
  • Published : 2008.12.30

Abstract

The adsorption characteristics of L-tryptophan of PES-BSA affinity membranes prepared by using electro-spinning were investigated. It was found that the fiber diameters could be controlled by the comparisons of fiber diameters prepared by various spinning conditions through FESEM and Image Analyzer. Darcy's permeability constants, mechanical properties and hydrophobic properties were enhanced since micro-fibers increased by increasing the composition ratio of HFB and BSA. The elution capacity of L-tryptophan in borate-DMSO buffer solution was higher than that in tris-HCl buffer solution, while the elution capacity of A 7906 type BSA was higher than A 8022 type BSA. This is due to the characteristics of BSA type, i. e. higher purity and uniform molecular weight and better pH stability of A 7906 type BSA than those of A 8022 type BSA.

전기방사법을 이용하여 제조된 pelyestersulfone (PES)-bovin albumin serum (BSA) 친화막에 대하여 L-tryptophan에 대한 흡착특성을 연구하였다. FESEM과 Image Analyzer를 이용하여 방사조건에 따른 섬유의 직경분포를 비교분석 함으로써 섬유의 직경을 조절할 수 있음을 알았다. 또한, 2,2,3,4,4,4-Hexafluoro-1-butanol (HFB)와 BSA의 함량증가에 따른 미세섬유 발생빈도가 높아져서 Darcy 투과도, 기계적 물성, 발수성이 증가한다는 것을 알았다. L-tryptophan의 용출량은 tris-HCl 완충용액보다 borate-DMSO 완충용액에서 높았으며, A 8022형 BSA보다 A 7906형 BSA가 높은 용출량을 보였다. 이러한 결과는 BSA의 종류에 따른 그 특성에 기인하는 것으로 A 7906형은 A 8022형보다 순도가 높고 분자량 분포가 고르며, 사용 pH 환경이 더욱 안정적이기 때문이다.

Keywords

References

  1. J. H. Brewster, Stereochemistry and the origins of life, J. Chem. Ed., 63, 667 (1986) https://doi.org/10.1021/ed063p667
  2. 현명호, LC에 의한 광학이성질체의 분리, 이갑수 외, 서울 (1992)
  3. W. H. De Camp, In chrial chromatography, W. J. Lough, ed., Blackie, Glasgow and London (1989)
  4. M. Simonyi, On chiral drug action, Med. Res. Rev., 4, 359 (1984) https://doi.org/10.1002/med.2610040304
  5. S. Stinson, Chiral Drugs, Chemical and Chemical Engineering News, Sep. 28, 46 (1992)
  6. 김인호, 한미 제약 FTA와 키랄 의약품 개발, News & Information for Chemical Engineers, 25, 354 (2007)
  7. R. H. McMenamy and J. L. Oncley, The Specific Binding of L-Tryptophan to Serum Albumin, J. Biol. Chem., 233, 1436 (1958)
  8. K. K. Stewart and R. F. Doherty, Resolution of DL-Tryptophan by Affinity Chromatography on Bovine-Serum Albumin-Agarose Columns, Proc. Nat. Acad. Sci. USA, 70, 2850 (1973) https://doi.org/10.1073/pnas.70.10.2850
  9. C. Lagercrantz, T. Larsson, and H. Karlsson, Binding of some fatty acids and drugs to immobilized bovine serum albumin studied by column affinity chromatography, Anal. Biochem., 99, 352 (1979) https://doi.org/10.1016/S0003-2697(79)80019-6
  10. J. Yang and D. S. Hage, Role of binding capacity versus binding strength in the separation of chiral compounds on protein-based high-performance liquid chromatography columns Interactions of Dand L-tryptophan with human serum albumin, J. Chromatogr. A, 725, 273 (1996) https://doi.org/10.1016/0021-9673(95)01009-2
  11. F. H. Arnold, H. W. Blanch, and C. R. Wilke, Analysis of affinity separations II: The characterization of affinity columns by pulse techniques, Chem. Eng, J., 30(1), B9 (1985) https://doi.org/10.1016/0300-9467(85)80016-2
  12. R. P. W. Scott, Liquid chromatography column theory, John Wiley & Sons, New York (1992)
  13. K. G. Briefs and M. R. Kula, Fast protein chromatography on analytical and preparative scale using modified microporous membranes, Chem. Eng. Sci., 47, 141 (1992) https://doi.org/10.1016/0009-2509(92)80208-T
  14. H. Ding, M. Yang, D. Schisla and E. L. Cussler, Hollow-fiber liquid chromatography, AIChe J., 35, 814 (1989) https://doi.org/10.1002/aic.690350512
  15. S. Brandt, R. A. Goffe, S. B. Kessler, J. L. O'Connor, and S. E. Zale, Membrane-based affinity technology for commercial scale purifications, Bio/Technology, 6, 779 (1988) https://doi.org/10.1038/nbt0788-779
  16. B. Champluvier and M. R. Kula, Microfiltration membranes as pseudo-affinity adsorbents: modification and comparison with gel beads, J. Chromatogr. A, 539, 315 (1991) https://doi.org/10.1016/S0021-9673(01)83940-6
  17. 홍병표, 변홍식, 전기방사법에 의한 친화막 제조, 멤브레인, 17(1), 23 (2007)
  18. 홍병표, 변홍식, 친화막의 L-tryptophan의 흡착특성, 멤브레인, 18(3), 214 (2008)
  19. 양성철, 김찬, 분리여과용 나노섬유 소재, 섬유산업과 기술, 11, 145 (2007)