Моделирование процессов аналитической биосепарации и биоконверсии на основе высокоэффективной мембранной хроматографии
Диссертация
Новыми и весьма перспективными сорбентами, удовлетворяющими всем требованиям, выдвигаемым к современным стационарным фазам, являются так называемые монолитные носители, занимающие в последние годы бесспорную лидерскую позицию в данной научной и практической области. Среди них, в первую очередь, могут быть названы макропористые сополимеры 2,3-эпоксипропилметакрилата (глицидилметакрилата, ГМА… Читать ещё >
Список литературы
- Nomenclature for chromatography. IUPAC recommendations (1993) J. Pure
- Appl. Chem. 65(4) (1993) 819.
- S. M. A. Bueno, K. Haupt, M. A. Vijayalakshmi, Separation ofimmunoglobulin G from human serum by pseudobioaffinity chromatography using immobilized histidine in hollow fibre membranes, J. Chromatogr. B, 691 (1997)33−41.
- Я. Туркова, Аффинная хроматография, пер. с англ., М., Мир, 1980.
- Y. D. Clonis, Matrix evaluation for preparative high-performance affinitychromatography, J. Chromatogr., 407 (1987) 179−187.
- Т. Б. Тенникова, докт. дисс., СПб, 1997.
- G. Т. Hermanson, А. К. Mallia, Р. К. Smith, Immobilized Affinity Ligand
- Techniques, Academic Press, 1992.
- К. K. Unger (Ed.), Packings and Stationary Phases in Chromatographic
- Techniques, New York, Marcel Dekker, 1990, p. 75−98.
- S. Hjerten, A. Vegvari, A. Resin, A. Takatsy, F. Kilar, A. Maruska, M.
- Schmid, G. Gubitz, Gleanings from recent advances in microscale separations, Book of Abstracts, SBS 2001, p. 13.
- J. L. Coffman, D. K. Roper and E. N. Lightfoot, High-resolutionchromatography of proteins in short columns and adsorptive membranes, Bioseparations, 4 (1994) 183−200.
- G. Jilge, R. Janzen, H. Giesche, К. K. Unger, J. N. Kinkel, M. T. W. Hearn,
- H. Iwata, K. Saito, S. Furusaki, T. Sugo, J. Okamoto, Adsorption characteristics of an immobilized metal affinity membrane, Biotechnol. Prog., 7(1991)412−418.
- J. Hradil, D. Horak, M. Benes, in: M. Potschka, P. Dubin (Eds.), Strategies in Size Exclusion Chromatography, ACS Symposium Series 635, Washington, D.C., 1996, 212−245.
- V. Saxena, A. E. Weil, Radial flow column: a new approach to scaling-up biopurifications, BioChromatography, 2 (1987) 90−97.
- W- C. Lee, Protein separation using non-porous sorbents, J. Chromatogr. B, 699 (1997) 29.
- Y. F. Maa, C. Horvath, Rapid analysis of proteins and peptides by reversed-phase chromatography with polymeric micropellicular sorbents, J. Chromatogr., 445 (1988) 71−86.
- A. E. Rodrigues, Permeable packings and perfusion chromatography in protein separation, J. Chromatogr. B, 699 (1997) 47−61.
- A. E. Rodrigues, J. C. Lopes, Z. P. Lu, J. M. Loureiro, M. M. Dias, Importance of intraparticle convection in the performance of chromatographic processes, J. Chromatogr., 590 (1992) 93−100.
- A. I. Liapis, Y. Xu, O. K. Grosser, A. Tongta, «Perfusion chromatography». The effects of intra-particle convective velocity and microsphere size on column performance, J. Chromatogr., 702 (1995) 45−57.
- G. A. Heeter, A. I. Liapis, Estimation of pore diameter for intraparticle fluid flow in bidisperse porous chromatographic particles, J. Chromatogr., 761 (1997) 35−40.
- J. J. Van Deemter, F. J. Zuiderweg, A. Klinkenberg, Longitudinal diffusion and resistance to mass transfer as causes of nonideality in chromatography, Chem. EngngSci., 50 (1995) 3869−3882.
- G. A. Heeter, A. I. Liapis, Effects of structural and kinetic parameters on the performance of chromatographic columns packed with perfusive and purely diffusive adsorbent particles, J. Chromatogr., 743 (1996) 3−14.
- Cz. Horvath, Preparative HPLC, NATO ASI Chromatographic and Membrane Processes in Biotechnology, Azore, 1990.
- F. Svec, J. M. J. Frechet, Modified poly (glycidyl methacrilate-co-ethylene dimethacrylate) continuous rod columns for preparative-scale ion exchange chromatography of proteins, J. Chromatogr., 702 (1995) 89.
- S. Hjerten, J. L. Liao, R. Zhang, High-performance liquid chromatography on continuous polymer beds, J. Chromatogr473 (1989)273−275.
- J. Mohhammad, S. Hjerten, Continuous beds. Their applicability for immobilization of proteins, Biomed. Chromatogr., 8(4) (1994) 165−169.
- T. B. Tennikova, M. Bleha, F. Svec, T. V. Almazova, B. G. Belenkii, High performance membrane chromatography of proteins: a novel method of protein separation, J. Chromatogr., 555 (1991) 97−107.
- T. B. Tennikova, F. Svec, High-performance membrane chromatography: highly efficient separation method for proteins in ion-exchange, hydrophobic interaction and reversed-phase modes, J. Chromatogr., 646 (1993) 279−288.
- H. Abou-Rebyeh, F. Korber, K. Schubert-Rehberg, J. Reusch, Dj. Josic, Carrier membrane as a stationary phase for affinity chromatography and kinetic studies of membrane-bound proteins, J. ChromatogrB 566 (1991) 341−350.
- Dj. Josic, J. Reusch, K. Loster, O. Baum, W. Reutter, High performance membrane chromatography of serum and plasma membrane proteins, J. Chromatogr., 590 (1992) 59−76.
- F. Svec, J. M. J. Frechet, Kinetic control of pore formation in macroporous polymers. Formation of «molded» porous materials with flow characteristics for separation and catalysis, Chem. Mater., 7 (1995) 707−715.
- J. J. Meyers, A. I. Liapis, Network modeling of the convective flow and diffusion of molecules adsorbing in monoliths and in porous particles packed in a chromatographic column, J. Chromatogr. A, 852 (1999) 3−23.
- C. Tanford, The Hydrophobic Effect, 2nd Ed., New York, Wiley, 1980.
- R. Snyder, in: HPLC of Biological Molecules, Methods and Applications (K. M. Goodings, F. E. Regnier Eds.), Dekker, New York, 1990, p. 231.
- F. E. Regnier, R. M. Chiez, in: HPLC of Biological Molecules, Methods and Applications (K. M. Goodings, F. E. Regnier Eds.), Dekker, New York, 1990, p. 89.
- R. M. Moore, R. R. Walters, Protein separations on reversed-phase highperformance liquid chromatography minicolumns, J. Chromatogr., 317 (1984) 119−128.
- R. S. Blanquet, K. H. Bui, D. W. Armstrong, Mechanistic considerations on the reversed phase liquid chromatographic separation of proteins, J. Liq. Chromatogr., 9(9) (1986) 1933−1949.
- E. Klein, Affinity membranes: a 10-year review, J. Membr. Sci., 179 (2000) 127.
- N. I. Dubinina, O. I. Kurenbin, T. B. Tennikova, Peculiarities of gradient ionexchange high-performance liquid chromatography of proteins, J. Chromatogr. A, 753 (1996) 217−225.
- T. B. Tennikova, R. Freitag, An introduction to monolithic disks as stationary phases for high performance biochromatography, High Resol. Chromatogr., 23 (2000) 27−47.
- J. Thommes, M.-R. Kula, Membrane chromatography an integrative concept in the down-stream processing of proteins, Biotechnol. Prog., 11 (1995) 357 367.
- M. Nachman, A. R. M. Azad, P. Bailon, Kinetic aspects of membrane-based immuno-affinity chromatography, J. Chromatogr., 591 (1992) 167−172.
- J. A. Gerstner, R. Hamilton, S. M. Cramer, Membrane chromatographic systems for high-throughput protein separations, J. Chromatogr., 596 (1992) 173−180.
- O.-W. Reif, R. Freitag, Characterisation and application of strong ionexchange membrane adsorbers as stationary phases in high performance liquid chromatography of proteins, J. Chromatogr654 (1993) 29−41.
- A. Jungbauer, F. Unterluggauer, K. Uhl, A. Buchacher, F. Steindl, D. Pettauer, E. Wenisch, Scale-up of monoclonal antibody purification using radial streaming ion-exchange chromatography, Biotechnol. Bioeng., 32 (1988) 326 333.
- T. B. Tennikova, B. G. Belenkii, F. Svec, High-performance membrane chromatography. A novel method of protein separation, J. Liq. Chromatogr., 13 (1990) 63−71.
- F. Svec, T. Tennikova, Polymeric separation media for chromatography of biopolymers in a novel shape: macroporous membranes, Bioact.Compat. Polym., 6 (1991) 394−406.
- C. Kasper, L. Meringova, R. Freitag, T. Tennikova, Fast isolation of protein receptors from streptococci G by means of macroporous affinity disks, J. Chromatogr., 65 (1998) 65−72.
- Berruex, R. Freitag, T. B. Tennikova, Comparison of antibody binding to immobilized group specific affinity ligands in high performance monolith affinity chromatography, J. Pharm. Biomed. Anal., 24 (2000) 95−104.
- A. Podgornik, M. Barut, J. Jancar, A. Strancar, T. Tennikova, Highperformance membrane chromatography of small molecules, Anal. Chem., 71 (1999) 2986−2991.
- R. Freitag, J. Breier, Displacement chromatography in biotechnological downstream processing, J. Chromatogr., 691 (1995) 101.
- R. Freitag, S. Vogt, Comparison of particulate and continuous-bed columns for protein displacement chromatography, J. Biotechnol., 78(1) (2000) 69−82.
- Okay, Macroporous copolymer networks, Prog. Polym. Sci., 25 (2000) 711 779.
- S. Xie, R. Alington, J. M. J. Frechet, F. Svec, in: Advances in Biochemical Engineering/Biotechnology (Th. Scheper, R. Freitag, Eds), vol. 76, BerlinHeidelberg, Springer-Verlag, 2002, p. 88.
- M. Abrams, J. R. Millar, A history of the origin and development of macroporous ion-exchange resins, React. Polym. 35 (1997) 7−22.
- J.-L. Luna-Xavier, E. Bourgeat-Lami, A. Guyot, The role of initiation in the synthesis of silica/poly (methyl methacrylate) nanocomposite latex particles through emulsion polymerization, Coll. Pol. Sci., 279 (2001) 0947−0958.
- E.T.W.M. Schipper, О. Sindt, Т. Hamaide, P. Lacroix-Desmazes, B. Muller et al., Reactive surfactants in heterophase polymerization for high performance polymers, Coll. Pol. ScL, 276 (1998) 402−411.
- K. Dusek, in: Polymer networks: structure and mechanical properties (A. J. Chompff, S. Newman Eds), New York, Plenum Press, 1971, p. 245.
- D. C. Sherrington, P. Hodge, Syntheses and separations using functional polymers, New York, Wiley, 1989.
- Q. Wang, F. Svec, J. M. J. Frechet, Macroporous polymeric stationary-phase rod as continuous separation medium for reversed phase chromatography, Anal Chem., 65 (1993) 2243−2248.
- E. C. Peters, F. Svec, J. M. J. Frechet, Rigid macroporous polymer monoliths, Adv. Mater., 11 (1999) 1169−1181.
- A. Podgornik, M. Barut, A. Strancar, D. Josic, T. Koloini, Construction of large volume monolithic columns, Anal. Chem., 72 (2000) 5693−5699.
- R. L. Albright, React. Polym., 4 (1986) 155.
- K. A. Kun, R. Kunin, The pore structure of macroreticular ion exchange resins, J. Polym. Sci., C16 (1967) 1457−1469.
- С. Т. Хванг, К. Каммермейер, Мембранные процессы разделения, М., Химия, 1981, с. 71.
- F. Т. Sarfert, М. R. Etzel, Mass transfer limitations in protein separations using ion-exchange membranes, J. Chromatogr., 764 (1997) 3−20.
- M. B. Tennikov, N. V. Gazdina, Т. B. Tennikova, F. Svec, Effect of porous structure of macroporous polymer supports on resolution in high-performance membrane chromatography of proteins, J. Chromatogr., 798 (1998) 55−64.
- A. Podgornik, Т. B. Tennikova, Chromatographic reactors based on biomolecular activity, in: Advances in Biochemical Engineering/Biotechnology (Th. Scheper, R. Freitag, Eds), vol. 76, BerlinHeidelberg, Springer-Verlag, 2002, p. 165.
- R. F. Taylor, Protein immobilization: fundamentals and application, New York, Marcel Dekker, 1991.
- S. S. Wong, Chemistry of protein conjugation and cross-linking, Boca Raton, CRC Press, 1993.
- K. Hoffman, D. J. O’Shannessy, Site-specific immobilization by their oligosaccharide moieties to new hydrazide derivatized solid supports, J. Immunol. Met., 112 (1988) 113−120.
- J. Turkova, in: Analitical and preparative separation methods of biomolecules (H. Y. Aboul-Enein, Ed), New York Basel, Marcel Dekker, 1999, p. 99.
- T. H. Sisson, C. W. Castor, An improved method for immobilizing IgG antibodies on protein A-agarose, Immunol. Methods, 217 (1990) 215−220
- P. L. Domen, J. R. Nevens, A. K. Mallia, G. T. Hermanson, D. C. Klenk, Site-directed immobilization of proteins, Chromatogr., 510 (1990) 293−302.
- J. Turkova, Oriented immobilization of biologically active proteins as a tool for revealing protein interactions and functions, J. Chromatogr., 722 (1999) 1131.
- P. C. Gunaranta, G. S. Wilson, Optimization of multienzyme flow reactors for determination of acetylcholine, Anal. Chem., 62 (1990) 402−407.
- C. M. Niemeyer, L. Boldt, B. Ceyhan, D. Blohm, Evaluation of single-stranded nucleic acids as carriers in the DNA-directed assembly of macromolecules, J. Biomol. Struct. Dyn., 17(3) (1999) 527−538.
- F. Salto, E. Cortes, J.L. Barredo, R. Fernandez-Lafuente, B. Diez, P. Armisen, C. Mateo, J.L. Garca, J.M. Guisan, L. Rodes, Selective adsorption of poly-His tagged glutaryl acylase on tailor-made metal chelate support, J. Chromatogr. A, 848(1999)61−70.
- N. Labrou, Y. D. Clonis, The affinity technology in downstream processing, J.
- Biothech., 36 (1994)95−119.
- H. Ehle, A. Horn, Immunoaffinity chromatography, Bioseparations, 3 (1990)47.53.
- M. Berry, J. Davies, S. Smith, I. Smith, Immobilized of Fv antibody fragmentson porous silica and their utility in affinity chromatography, J. Chromatogr., 587(1991) 161−169.
- G. Welling, T. Geurts, J. V. Gorkum, R. Damhof, J. Wouter-Drijfhout, W.
- Bloemhoff, S. Welling-Wester, Synthetic antibody fragment as ligand in immunoaffinity chromatography, J. Chromatogr., 512 (1990)337−343.
- D. Weber, P. Bailon, Application of receptor-affinity chromatography tobioaffinity purification, J. Chromatogr., 510 (1990) 59−69.
- E. Bayer, E. Wilchek, Applications of a avidin-biotin technology to affinitybased separations, J. Chromatogr., 510 (1990) 3−11.
- I. Chaiken, Analysis of macromolecular interaction using immobilized ligands,
- Anal Biochem., 201 (1992) 197−210.
- K. Kasai, Trypsin and affinity chromatography, J. Chromatogr., 597 (1992) 318.
- A. Petel, M. O’Hara, J. Callaway, D. Greene, J. Martin, A. Nishikawa, Affinitypurification of tissue plasminogen activator using transition-state analogues, J. Chromatogr510 (1990) 83−93.150
- S. H. Langer, J. E. Patton, In: H. Purnell (Ed) New developments in gaschromatography. Vol 11, Advances in Analytical Chemistry and Instrumentatio, New York, John Wiley&Sons, Inc, 1973.
- E. M. Magee, Can. Pat. 631 882 (1961).
- J. A. Dinwiddie, US Patent, 2 976 132 (1961).
- L. Giorno, E. Drioli, Biocatalytic membrane reactors: applications andperspectives, Tibtech, 18 (2000) 339−349.
- Dj. Josic, H. Schwinn, A. Strancar, A. Podgornik, M. Barut, Y.-P. Lim, M.
- Vodopivec, Use of compact, porous units with immobilized ligands with high molecular masses in affinity chromatography and enzymatic conversion of substrates with high and low molecular masses, J. Chromatogr. 803 (1998) 61−71.
- H.-D. Jakubke, P. Kuhl, A. Konnencke, Basic principles of protease-catalyzedpeptide bond formation, Angew. Chem., 24 (1985) 85−93.
- P. Clapes, P. Adlercreutz, B. Mattiasson, Enzymatic peptide synthesis inorganic media: comparative study of water-miscible and water-immiscible solvent systems, J. Biotechnol., 15 (1990) 323−338.
- И. В. Гетун, И. Ю. Филиппова, Е. Н. Лысогорская, А. В. Бачева, Е. С.
- Оксенойт, Пептидный синтез, катализируемый субтилизином-72 в органических растворителях, Биоорг. химия, 25 (1999) 591−596.
- G. A. Homandberg, J. A. Mattis, М. Laskowski, Synthesis of peptide bonds byproteinases. Addition of organic cosolvents shifts peptide bond equilibria toward synthesis, Biochemistry, 17 (1978) 5220−5227.
- А. К. Гладилин, А. В. Левашов, Ферментативная стабильность в системахс органическими растворителями, Биохимия, 63 (1998) 408−421,151
- К. Nilsson, К. Mochbach, Immobilization of enzymes and affinity ligands tovarious hydroxyl group carrying supports using highly reactive sulfonyl chlorides, Biochem. and Biophysic. Research Communications, 102 (1981) 449−457.
- H. Gaertner, T. Watanabe, J. V. Sinisterra, A. Puigserver, Peptide synthesiscatalyzed by modified a-chymotrypsin in low-water organic media, J. Org. Chem., 56 (1991) 3149−3153.
- M. Reslow, P. Adlercreutz, B. Mattiasson, The influence of water on proteasecatalyzed peptide synthesis in acetonitrile/water mixture, Eur. J. Biochem., 177(1988)313−318.
- A. Konnecke, R. Bullerjahn, H.-D. Jakubke, Peptide synthesis by means ofimmobilized enzymes, Monatschefte fur Chemie, 112 (1981) 469.
- P. Clapes, P. Adlercreutz, B. Mattiasson, Enzymatic peptide synthesis inorganic media. Nucleophile specifity and medium engineering in a-chymotrypsin catalyzed reactions, Biothechnol. Appl. Biochem., 12 (1990) 376−386.
- Т. Дэвени, Я. Гергей, Аминокислоты. Пептиды. Белки, М., Мир, 1976,166.169.
- Дж. Стюард, Дж. Янг, Твердофазный синтез пептидов, М., Мир, 1971.
- V. I. Korol’kov, G. A. Platonova, V. V. Azanova, Т. В. Tennikova, G. Р.
- Vlasov, In situ preparation of peptidylated polymers as ready-to-use adsorbents for rapid immunoaffmity chromatography, Lett. Pept. Sci. (LIPS), 7(2000) 53−61.
- B. Chao, M. Brickelmaier, P. S. Hochman, R. Baciu, J.H. Cuervo, A. Whitty,
- ELISA methods for the analysis of antibody responses induced in multiple sclerosis patients treated with recombinant interferon-^, J. Immunol. Meth. 227 (1999) 121−135.152
- N. Heine, L. Germeroth, J. Schneider-Mergener, H. Wenschuh, A modularapproach to the SPOT synthesis of 1,3,5-trisubstituted hydantoins on cellulose membranes, Tetrahedron Lett., 42 (2001) 227−230.
- R. Frank, An easy technique for the positionnaly addressable, parallel chemicalsynthesis on a membrane support, Tetrahedron, 48 (1992) 9217−9231.
- K. Pflegerl, A. Podgornik, E. Schallaun, A. Jungbauer, Direct synthesis ofpeptides on CIM® monolithic columns for affinity chromatography, ISPPP'2000, Ljubljana, Slovenia.
- K. Pflegerl, A. Podgornik, E. Berger, A. Jungbauer, Direct Synthesis ofpeptides on conventive interaction media monolithic columns for affinity chromatography, J. Comb. Chem., 4 (2002) 33−37.
- G. A. Platonova, G. A. Pankova, I. Ye. Il’ina, G. P. Vlasov, Т. B. Tennikova,
- Quantitative fast fractionation of a pool of polyclonal antibodies by immunoaffinity membrane chromatography, J. Chromatogr., 852 (1998) 129 140.
- О. H. Lowry, N. I. Posebrough, A. L. Farr, P. I. Randall, Protein measurmentwith the folin phenol reagent, I. Biol. Chem. 193 (1951)265−275.
- L. Berruex, R. Freitag, T. Tennikova, High flowthrough enzymaticreactor/separator for conjoint hydrolysis of proteins and peptide mapping, HPLC'99, Granada, Spain.
- J. P. Briand, S. Muller, M. H. V. Van Regenmortel, Synthetic peptides asantigens: pitfalls of conjugation methods, J. Immunol. Methods, 78 (1985) 5969.
- Ю. А. Овчинников, Биоорганическая химия, M., Просвещение, 1987.
- К. R. Williams, К. L. Stone, Enzymatic cleavage and HPLC peptide mappingof proteins, Molec. Biotechnol., 8 (1997) 155−167.
- E. Kaezmarek, M. H. Lee, J. McDonagh, Initial interaction between fibrin andtissue plasminogen activator, J. Biolog. Chem., 268 (1993) 2474−2479.153