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Hyaluronic acid drug delivery

Richardson, J.L., and Armstrong, T.I., Vaginal Delivery of Calcitonin by Hyaluronic Acid Formulations. In Bioadhesive Drug Delivery Systems (E. Mathiowitz, D.E. Chickering, III, and C.-M. Lehr, eds.), Marcel Dekker, Inc., New York, 1999, pp. 563-599. [Pg.191]

Prestwich, G. D., D. M. Marecak, J. F. Marecek, K. P. Vercruysse, and M. R. Ziebell. 1998. Chemical modi- cation of hyaluronic acid for drug delivery, biomaterials, and biochemical problfeelChemistry,... [Pg.464]

Besides the polymer derivatization, combining the polymers in microsphere preparations can result in improved drug delivery and absorption characteristics. Hyaluronic acid-chitosan microspheres appeared to improve the absorption of incorporated gentamicin compared to the individual polymers, assembling the mucoadhesive potential of both polymers and the penetration-enhancing effect of chitosan [51,52],... [Pg.662]

Several other biodegradable, biocompatible, injectable polymers are being investigated for drug delivery systems. They include polyvinyl alcohol, block copolymer of PLA-PEG, polycyanoacrylate, polyanhydrides, cellulose, alginate, collagen, gelatin, albumin, starches, dextrans, hyaluronic acid and its derivatives, and hydroxyapatite. ... [Pg.1644]

Luo, Y. Kirker, K.R. Prestwich, G.D. Cross-linked hyaluronic acid hydrogel films new biomaterials for drug delivery. J. Control. Release 2000, 69, 169-184. [Pg.2036]

Comments hyaluronic acid is used as an adjuvant for ophthalmic drug delivery, and has been found to enhance the absorption of drugs and proteins via mucosal tissue. [Pg.682]

Yui, N., Okano, T., and Sakurai, Y. (1993) Photo-responsive degradation of heterogeneous hydrogels comprising crosslinked hyaluronic acid and lipid microspheres for term-poral drug delivery, J. Contr. Rel., 26, 141-145. [Pg.350]

Hahn SK, Jelacic S, Maier RV, Stayton PS, Hoffman AS. Anti-inflammatory drug delivery from hyaluronic acid hydrogels. J Biomater Sci, Polym Ed 2004 ... [Pg.352]

Fang JY, Chen JP, Leu YL, Hu JW. Temperature-sensitive hydrogels composed of chitosan and hyaluronic acid as injectable carriers for drug delivery. Eur J Pharm Biopharm 2008 68 626-636. [Pg.237]

Kafedjiiski, K. Jetti, R.K.R. Fbger, F. Hoyer, H. Werle, M. Hoffer, M. Bernkop-Schnllrch, A. Synthesis and in vitro evaluation of thiolated hyaluronic acid for mucoadhesive drug delivery. Int. J. Pharm. 2007, 343 (1-2), 48-58. [Pg.1252]

Jiang T, Zhang Z, Zhang Y, Lv H, Zhou J, Li C et al. Dual-functional liposomes based on pH-responsive cell-penetrating peptide and hyaluronic acid for tumor-targeted anticancer drug delivery. Biomaterials. 2012 33(36) 9246-9258. [Pg.1407]

K. Kyyronen, L. Hume, L. Benedetti, A. Urtti, E. Topp, V. Stella, Methylprednisolone esters of hyaluronic acid in ophthalmic drug delivery in vitro and in vivo release studies, Int. J. Pharm. 80 (1) (1992) 161-169. [Pg.85]

N. Yerushalmi, A. Arad, R. MargaUt, Molecular and cellular studies of hyaluronic acid-modified liposomes as bioadhesive carriers for topical drug delivery in wound healing, Arch. Biochem. Biophys. 313 (2) (1994) 267-273. [Pg.86]

D. Coradini, C. Pellizzaro, G. Miglierini, M.G. Daidone, A. Perbel-lini, Hyaluronic acid as drug delivery for sodium butyrate improvement of the anti-proliferative activity on a breast-cancer cell line, Int. J. Cancer 81 (3) (1999) 411 16. [Pg.86]


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See also in sourсe #XX -- [ Pg.819 ]

See also in sourсe #XX -- [ Pg.819 ]




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