The Controlled Release of Prednisolone Using Alginate Gel
Tóm tắt
Từ khóa
Tài liệu tham khảo
A. Haug and B. Larsen. Quantitative determination of the uronic acid composition of alginates. Acta Chem. Scand. 16:1908–1918 (1962).
A. Haug, B. Larsen, and O. Smidsrod. Studies on the sequence of uronic acid residues in alginic acid. Acta Chem. Scand. 21:691–704 (1967).
D. Thom, G. T. Grant, E. R. Morris, and D. A. Rees. Characterization of cation binding and gelation of polyuronates by circular dichroism. Carbohydr. Res. 100:29–42 (1982).
G. T. Grant, E. R. Morris, D. A. Rees, P. J. C. Smith, and D. Thom. Biological interactions between polysaccharides and divalent cations: The egg-box model. FEBS Lett. 32:195–198 (1973).
A. A. Badwan, A. Abumalooh, E. Sallam, A. Abukalaf, and O. Jawan. A sustained release drug delivery system using calcium alginate beads. Drug Dev. Ind. Pharm. 11:239–256 (1985).
C. K. Kim and E. J. Lee. The controlled release of blue dextran from alginate beads. Int. J. Pharm. 79:11–19 (1992).
N. Segi, T. Yotsuyanagi, and K. Ikeda. Interaction of calcium-induced alginate gel beads with propranolol. Chem. Pharm. Bull. 37:3092–3095 (1989).
K. Yamaoka, T. Nakagawa, and T. Uno. Statistical moments in pharmacokinetics. J. Pharmacokinet. Biopharm. 6:547–558 (1978).
K. Yamaoka, Y. Tanigawara, T. Nakagawa, and T. Uno. A pharmacokinetic analysis program (MULTI) for microcomputer. J. Pharmacobio-Dyn. 4:879–885 (1981).
K. Yamaoka and Y. Tanigawara. Maikon niyoru yakubutsusokudoron nyumon, Nankodo, Tokyo, 1983.
N. Katori, K. Okudaira, N. Aoyagi, Y. Takeda, and M. Uchiyama. In vitro and in vivo correlation for controlled-release formulation of d-chlorpheniramine maleate. J. Pharmacobio-Dyn. 14:567–575 (1991).
T. Higuchi. Mechanism of sustained-action medication. Theoretical analysis of rate of release of solid drugs dispersed in solid matrices. J. Pharm. Sci. 52:1145–1149 (1963).
T. Yotsuyanagi, T. Ohkubo, T. Ohhashi, and K. Ikeda. Calcium-induced gelation of alginic acid and pH-sensitive reswelling of dried gels. Chem. Pharm. Bull. 35:1555–1563 (1987).
O. Smidsrod and A. Haug. The effect of divalent metals on the properties of alginate solutions. I. Calcium ions. Acta Chem. Scand. 19:329–340 (1965).
A. Haug, S. Myklestad, B. Larsen, and O. Smidsrod. Correlation between chemical structure and physical properties of alginates. Acta Chem. Scand. 21:768–778 (1967).
A. Penman and G. R. Sanderson. A method for the determination of uronic acid sequence in alginates. Carbohydr. Res. 25:273–282 (1972).
D. A. Rees. Shapely polysaccharides. The eighth Colworth Medal Lecture. Biochem. J. 126:257–273 (1972).
S. Sugawara, T. Kawasaki, R. Kuroishi, T. Imai, and M. Otagiri. Characteristics of alginate gel beads and mechanism of drug release from alginate gel beads. 110th Annual Meeting of Pharmaceutical Society of Japan, Sapporo, August 1990, abstracts part 4, p. 118.
K. Tateshita, S. Sugawara, T. Imai, and M. Otagiri. Preparation and evaluation of a controlled-release formulation of nifedipine using alginate gel beads. Biol. Pharm. Bull. 16:420–424 (1993).
P. K. Maturu, V. K. Prasad, W. N. Worsley, G. K. Shiu, and J. P. Skelly. Influence of a high fat breakfast on the bioavailability of theophylline controlled-release formulations: An in vitro demonstration of an in vivo observation. J. Pharm. Sci. 75:1205–1206 (1986).
R. Dietrich, R. Brausse, G. Benedikt, and V. W. Steinijans. Feasibility of in-vitro/in-vivo correlation in the case of a new sustained-release theophylline pellet formulation. Arzneim.-Forsch./Drug Res. 38:1229–1237 (1988).