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Zastosowanie technik chromatograficznych do analizy chityny i chitozanu

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Bibliogr. 31 poz.
  • Katedra Analizy Środowiska Wydziału Chemii Uniwersytetu Gdańskiego, ul. Sobieskiego 18/19, 80-952 Gdańsk,
  • 1. R.A.A. Muzzarelli, C. Jeuniaux, G.W. Gooday, Chitin in nature and technology, Plenum Publishing Corporation, New York, USA, 1986.
  • 2. C.K.S. Pillai, W. Paul, C.P. Sharma, Chitin and chitosan polymers: Chemistry, solubility and fiber formation. Progr. Polym. Sci., 34,641 -678,2009.
  • 3. I. Aranaz, M. Mengfbar, R. Harris, l. Panos, B. Miralles, N. Acosta, G. Galed, A. Heras, Functional Characterization of Chitin and Chitosan, Curr. Chem. Biol., 3, 203-230,2009.
  • 4. M.N.V. Ravi Kumar, A review of chitin and chitosan applications, React. Funct. Polym., 46, 1-27,2000.
  • 5. S. Aiba, Studies on chitosan: 4. Lysozymic hydrolysis of partially N-acetylated chitosans. Int. J. Biol. Macromol., 14, 225-228,1992.
  • 6. G.A.F. Roberts, The Road is long..... Adv. Chitin Sci., 10, 3-10,2007.
  • 7. A. Zamani, L. Edebo, B. Sjöström, M.J. Taherzadeh, Extraction and predpitation of chitosan from cell wall of zygomycetes fungi by dilute sulfuric add, Biomacromol., 8, 3786-90,2007.
  • 8. M. Rinaundo, Chitin and chitosan: Properties and applications, Prog. Polym. Sci., 31, 603-632, 2006.
  • 9. J. Synowiecki, N.A. Khateeb, Production , properties, and some new applications of chitin and its derivatives, Crit. Rev. Food Sci. Nutr., 43, 145-171, 2003.
  • 10. W. Xia, P. Liu, J. Zhang, J. Chen, Biological activities of chitosan and chitooligosaccharides, Food Hydrocolloids, doi:10.1016/ j.foodhyd.2010.03.003, 2010.
  • 11. S. Mun, E.A. Decker, D.J. McCIements, Effect of molecular weight and degree of deacetylation of chitosan on the formation of oil in water emulsions stabilized by surfactant-chitosan membranes, J. Colloid. Interface Sci., 296,581 -590, 2006.
  • 12. M. Lavertu, S. Methot, N. Tran-Khanh, M.D. Buschmann, High effidency gene transfer using chitosan/DNA nanoparticles with specific combinations of molecular weight and degree of deacetylation, Biomaterials, 27,4815-4824,2006.
  • 13. M.X. Weinhold, J.C.M Sauvageau,. N. Keddig, M. Matzke, B. Tartsch, I. Grunwald, C. Kübel, B. Jastorff, J. Thöming, Strategy to improve the characterization of chitosan for susta-inable biomedical applications: SAR guided multi-dimensional analysis, Green Chem., 11, 498-509, 2009.
  • 14. J. Kumirska, M. Czerwicka, Z. Kaczyński, A. Bychowska, K Brzozowski, J. Thöming, P. Stepnowski, Application of Spectroscopic Methods for Structural Analysis of Chitin and Chitosan, Mar. Drugs 8, 1567-1636,2010.
  • 15. M. Hasegawa, A. Isogai, F. Onabe, Molecular mass distribution of chitin and chitosan, Carbohydr. Res., 262, 161-166, 1994.
  • 16. M. Rinaudo, M. Milas, P. Le Dung, Characterization of chitosan. Influence of /on/c strength and degree of acetylation on chain expansion. Int. J. Biol. Macromol., 15, 281-285, 1993.
  • 17. R.G. Beri, J. Walker, E.T. Reese, J.E. Rollings, Characterization of chitosans via coupled size-exclusion chromatography and multiple-angle laser light-scattering technique, Carbohydr. Res., 238,11-26,1993.
  • 18. S. Nguyen, F.M. Winnik, Buschmann, M.D. lmproved reproducibility in the determination of the molecular weight of chitosan by analytical size exclusion chromatography, Carbohydr. Polym., 75, 528-533, 2009.
  • 19. M. Yanagisawa, Y. Kato, Y., Yoshida, A. Isogai, SEC-MALS study on aggregates of chitosan molecules in aqueous solvents: Influence of residual N-acetyl groups, Carbohydr. Polym., 66, 192-198,2006.
  • 20. M.H. Ottsy, K.M. Varum, B.E. Christensen, M.W. Anthonsen, O.Smidsrod, Preparative and analytical size-exclusion chromatography of chitosans, Carbohydr. Polym., 31, 253-261, 1996.
  • 21. B.E. Christensen, I.M.N. Vold, K.M. Varum, Chain stiffess and extension of chitosans and periodate oxidised chitosans studied by size-exclusion chromatography combined with light scattering and viscosity detectors, Carbohydr. Polym., 74, 559-565, 2008.
  • 22. G.A. Morris, J.Castile, A. Smith, G.G. Adams, S.E. Harding, Macromolecular conformation of chitosan in dilute solution: A new global hydro-dynamic approach, Carbohydr. Polym., 76,616-621,2009.
  • 23. S. Nguyen, S. Hisiger, M Jolicoeur, F.M. Winnik, M.D. Buschmann, Fractionation and Characterization of chitosan by analytical SEC and 1H NMR after semi-preparative SEC, Carbohydr. Polym., 75, 636-645, 2009.
  • 24. W. Yu, J. Lin, X. Liu, H. Xie, W. Zhao, X. Ma, Quantitative Characterization of membrane formation process of alginate-chitosan microcapsules by GPC, J. Membrane Sci., 346, 296-301,2010.
  • 25. B.Y. Yang, R. Montgomery, Degree of acetylation of heteropolysaccharides, Carbohydr. Res., 323,156-162,2000.
  • 26. Y.S. El-Saharty, A.A. Bary, High-performance liquid chromatographic determination of neutraceuticals, glucosamine sulphate and chitosan, in raw materials and dosage forms, Anal. Chim. Acta, 462, 125--131,2002.
  • 27. M. Eikenes, M. Fongen, L. Roed, Y. Stenstrom, Determination of chitosan in wood and water samples by acidic hydrolysis and liquid chromatography with online fluorescence derivatization, Carbohydr. Polym., 61,29-38,2005.
  • 28. Y. Han, Z. Lv, T. Jiang, Y. Wang, Bioanalysis and pharmacokinetics of chitosan ester in rabbit serum by HPLC with postcolumn fluorescence derivatization, J. Chromatogr. B, 845,138-142,2007.
  • 29. F. Le Devedec, L.Bazinet, A. Furtos, K. Venne, S. Brunet, M.A. Mateescu, Separation of chitosan oligomers by immobilized metal affinity chromatography, J. Chromatogr. A, 1194,165-171, 2008.
  • 30. D. Alonso, M. Gimeno, J.D. Sepulveda-Sanchez, K. Shirai, Chitosan-based microcapsules containing grapefruit seed extract grafted onto cellulose fibers by a non-toxic procedure, Carbohydr. Res., 345,854-859, 2010.
  • 31. T. Hattori, N. Anraku, R. Kato, Capillary electrophoresis of chitooligosaccharides in acidic solution: Simple determination using a quaternary-ammonium-modified column and indirect photometric detection with Crystal Violet, J. Chromatogr. B, 878,477-480, 2010.
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