硫酸化シクロデキストリンの難水溶性アルミニウム塩による塩基性線維芽細胞増殖因子の安定化および放出制御
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Published in | Drug Delivery System Vol. 9; no. 3; pp. 167 - 172 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | Japanese |
Published |
日本DDS学会
1994
|
Online Access | Get full text |
ISSN | 0913-5006 1881-2732 |
DOI | 10.2745/dds.9.167 |
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Author | 入江, 徹美 薗田, 良一 土方, 重樹 石村, 公敬 福永, 和弘 上釜, 兼人 |
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References | 2) Pitha, J., Mallis, L. M., Lamb, D. J., Irie, T., Uekama, K. : Cyclodextrin sulfates : characterization as polydisperse and amorphous mixtures. Pharm. Res. 8 : 1151-1154, 1991. 11) Yamaoka, K., Nakagawa, T., Uno, T. : Statistical moment in pharmacokinetics. J. Pharmacok. Biopharm. 6 : 547-558, 1978. 18) Nagashima, R. : Mechanisms of action of sucralfate. Clinical Gastroenterology 3 : 117-127, 1981. 19) Shiotani, K., Uehata, K., Irie, T., Uekama, K., Pitha, J. : Parenteral use of cyclodextrin sulfates : protection against gentamicin nephrotoxicity in rats. (ed. Hedges, A. R.), Minutes of the 6th International Symposium on Cyclodextrins, Editions de Sante, Paris, 1992, p 567-570. 4) Arakawa, T., Horan, T. P., Narhi, L. O., Rees, D. C., Schiffer, S. G., Holst, P. L., Prestrelski, S. J., Tsai, L. B., Fox, G. M. : Production and characterization of an analog of acidic fibroblast growth factor with enhanced stability and biological activity. Protein Engineering 6 : 541-546, 1993. 6) Kajio, T., Kawahara, K., Kato, K. : Stabilization of basic fibroblast growth factor with dextran sulfate. FERS Letters 306 : 243-246, 1992. 14) Burke, C. J., Volkin, D. B., Mach, H., Middaugh, C. R. : Effect of polyanitons on the unfolding of acidic fibroblast growth factor. Biochemistry 32 : 6419-6426, 1993. 3) Gospcdarowicz, D., Ferrara, N., Schweigerer, L., Neufeld, G. : Structural characterization and biological functions of fibroblast growth factor. Endoer. Rev. 8 : 95-114, 1987. 7) Tsai, P. K., Volkin, D. B., Dabora, J. M., Thompson, K. C., Bruner, M. W,, Gress, J. O., Matuszewska, B., Keogan, M., Bondi, J. V., Middaugh, C. R. : Formulation design of acidic fibroblast growth factor. Pharm. Res. 10 : 649-659, 1993. 8) Nagashima, K., Hirano, T. : Selective binding of sucralfate to ulcer lesion I. Experiments in rats with acetic acid-induced gastric ulcer receiving unlabelled sucralfate. Arzneim.-Forsch. 30 : 80-83, 1980. 5) Davidson, J. M., Klagsbrun, M., Hill, K. E., Buckley, A., Sullivan, R., Brewer, P, S., Woodward, S. C. : Accelerated wound repair, cell proliferation, and collagen accumulation are produced by a cartilage-derived growth factor. J. Cell Biol. 100 : 1219-1227, 1985. 1) Folkman, J., Weisz, P. B., Joullie, M. M., Li, W.W., Ewing, W. R. : Control of angiogenesis with synthetic heparin substitutes. Sciences 243 : 1490-1493, 1989. 12) Shing, Y., Folkman, J., Weisz, P. B., Joullie, M. M., Ewing, W. R. : Affinity of fibroblast growth factors for β-cyclodextrin tetradecasulfate. Anal. Biochem. 185 : 108-111, 1990. 16) Buntrock, P., Jentzsch, K. D., Heder, G.: Stimulation of wound healing, using brain extract with fibroblast growth factor(FGF)activity. I. Quantitative and biochemical studies into formation of granulation tissue. Exp. Path. 21 : 46-53, 1982. 9) Nagashima, R., Yoshida, N.: Sucralfate, a basic aluminum salt of sucrose sulfate I. Behaviors in gastroduodenal pH. Arzneim.-Forsch. 29 : 1668-1676, 1979. 15) Fukunaga, K., Hijikata, S., Ishimura, K., Sonoda, R., Irie, T., Uekama, K. : Aluminium β-cyclodextrin sulphate as a stabilizer and sustained-release carrier for basic fibroblast growth factor. J. Pharm. Pharmacol. 46 : 168-171, 1994. 13) Florence, A. T., Attwood, D. : Physicochemical Principles of Pharmacy. Macmilian Press, London, 1981, p 196-205. 10) Iwane, M., Kurokawa, T., Sasada, R,, Seno, M., Nakagawa, S., Igarashi, K.: Expression of cDNA encoding human basic fibroblast growth factor in E. Coli. Biochem. Biophys. Res. Comm. 146 : 470-477, 1987. 17) Szejtli, J. : Cyclodextrin Technology. Kluwer, Dordrecht, The Netherlands, 1988, p 57. |
References_xml | – reference: 8) Nagashima, K., Hirano, T. : Selective binding of sucralfate to ulcer lesion I. Experiments in rats with acetic acid-induced gastric ulcer receiving unlabelled sucralfate. Arzneim.-Forsch. 30 : 80-83, 1980. – reference: 13) Florence, A. T., Attwood, D. : Physicochemical Principles of Pharmacy. Macmilian Press, London, 1981, p 196-205. – reference: 15) Fukunaga, K., Hijikata, S., Ishimura, K., Sonoda, R., Irie, T., Uekama, K. : Aluminium β-cyclodextrin sulphate as a stabilizer and sustained-release carrier for basic fibroblast growth factor. J. Pharm. Pharmacol. 46 : 168-171, 1994. – reference: 11) Yamaoka, K., Nakagawa, T., Uno, T. : Statistical moment in pharmacokinetics. J. Pharmacok. Biopharm. 6 : 547-558, 1978. – reference: 19) Shiotani, K., Uehata, K., Irie, T., Uekama, K., Pitha, J. : Parenteral use of cyclodextrin sulfates : protection against gentamicin nephrotoxicity in rats. (ed. Hedges, A. R.), Minutes of the 6th International Symposium on Cyclodextrins, Editions de Sante, Paris, 1992, p 567-570. – reference: 9) Nagashima, R., Yoshida, N.: Sucralfate, a basic aluminum salt of sucrose sulfate I. Behaviors in gastroduodenal pH. Arzneim.-Forsch. 29 : 1668-1676, 1979. – reference: 2) Pitha, J., Mallis, L. M., Lamb, D. J., Irie, T., Uekama, K. : Cyclodextrin sulfates : characterization as polydisperse and amorphous mixtures. Pharm. Res. 8 : 1151-1154, 1991. – reference: 3) Gospcdarowicz, D., Ferrara, N., Schweigerer, L., Neufeld, G. : Structural characterization and biological functions of fibroblast growth factor. Endoer. Rev. 8 : 95-114, 1987. – reference: 4) Arakawa, T., Horan, T. P., Narhi, L. O., Rees, D. C., Schiffer, S. G., Holst, P. L., Prestrelski, S. J., Tsai, L. B., Fox, G. M. : Production and characterization of an analog of acidic fibroblast growth factor with enhanced stability and biological activity. Protein Engineering 6 : 541-546, 1993. – reference: 14) Burke, C. J., Volkin, D. B., Mach, H., Middaugh, C. R. : Effect of polyanitons on the unfolding of acidic fibroblast growth factor. Biochemistry 32 : 6419-6426, 1993. – reference: 1) Folkman, J., Weisz, P. B., Joullie, M. M., Li, W.W., Ewing, W. R. : Control of angiogenesis with synthetic heparin substitutes. Sciences 243 : 1490-1493, 1989. – reference: 7) Tsai, P. K., Volkin, D. B., Dabora, J. M., Thompson, K. C., Bruner, M. W,, Gress, J. O., Matuszewska, B., Keogan, M., Bondi, J. V., Middaugh, C. R. : Formulation design of acidic fibroblast growth factor. Pharm. Res. 10 : 649-659, 1993. – reference: 16) Buntrock, P., Jentzsch, K. D., Heder, G.: Stimulation of wound healing, using brain extract with fibroblast growth factor(FGF)activity. I. Quantitative and biochemical studies into formation of granulation tissue. Exp. Path. 21 : 46-53, 1982. – reference: 10) Iwane, M., Kurokawa, T., Sasada, R,, Seno, M., Nakagawa, S., Igarashi, K.: Expression of cDNA encoding human basic fibroblast growth factor in E. Coli. Biochem. Biophys. Res. Comm. 146 : 470-477, 1987. – reference: 17) Szejtli, J. : Cyclodextrin Technology. Kluwer, Dordrecht, The Netherlands, 1988, p 57. – reference: 12) Shing, Y., Folkman, J., Weisz, P. B., Joullie, M. M., Ewing, W. R. : Affinity of fibroblast growth factors for β-cyclodextrin tetradecasulfate. Anal. Biochem. 185 : 108-111, 1990. – reference: 18) Nagashima, R. : Mechanisms of action of sucralfate. Clinical Gastroenterology 3 : 117-127, 1981. – reference: 6) Kajio, T., Kawahara, K., Kato, K. : Stabilization of basic fibroblast growth factor with dextran sulfate. FERS Letters 306 : 243-246, 1992. – reference: 5) Davidson, J. M., Klagsbrun, M., Hill, K. E., Buckley, A., Sullivan, R., Brewer, P, S., Woodward, S. C. : Accelerated wound repair, cell proliferation, and collagen accumulation are produced by a cartilage-derived growth factor. J. Cell Biol. 100 : 1219-1227, 1985. |
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Title | 硫酸化シクロデキストリンの難水溶性アルミニウム塩による塩基性線維芽細胞増殖因子の安定化および放出制御 |
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