Bioadhesive PAA-PEG-PAA triblock copolymer hydrogels for drug delivery in oral cavity

Macromolecular Research - Tập 18 - Trang 284-288 - 2010
Minh Khanh Nguyen1, Doo Sung Lee1
1Department of Polymer Science and Engineering, Sungkyunkwan University, Gyeonggi-do, Korea

Tóm tắt

A series of poly(amidoamine)-poly(ethylene glycol)-poly(amidoamine) (PAA-PEG-PAA) triblock copolymers were designed and prepared to examine the factors affecting their sol-gel transition behavior. The physiochemical properties of the triblock copolymers were characterized by 1H NMR spectroscopy and gel permeation chromatography. The PAA-PEG-PAA copolymers underwent sol-gel transitions in solution (10–15 wt%) in response to changes in both the pH and temperature. The sol-gel transition phase behavior was controlled by adjusting the molecular weights of the PEG and PAA blocks and changing the PAA-PEG-PAA concentration. These copolymers demonstrated stronger bioadhesive properties than chitosan and poly(acrylic acid) in an aqueous solution. The in vitro release of flubiprofen was controllable using these copolymer hydrogels.

Tài liệu tham khảo

W. S. Shim, J. S. Yoo, Y. H. Bae, and D. S. Lee, Biomacromolecules, 6, 2930 (2005). W. S. Shim, J. Kim, K. Kim, R. Park, I. Kim, I. C. Kwon, and D. S. Lee, Int. J. Pharm., 331, 11 (2007). M. D. Determan, J. P. Cox, and S. K. Mallapragada, J. Biomed. Mater. Res., 81A, 326 (2007). D. P. Huynh, M. K. Nguyen, B. S. Pi, M. S. Kim, S. Y. Chae, K. C. Lee, B. S. Kim, S. W. Lee, and D. S. Lee, Biomaterials, 29, 2527 (2008). J. M. Suh, S. J. Bae, and B. Jeong, Adv. Mater., 17, 118 (2005). S. Y. Park, Y. Lee, K. H. Bae, C. H. Ahn, and T. G. Park, Macromol. Rapid Commun., 28, 1172 (2007). K. Dayananda, C. He, and D. S. Lee, Polymer, 49, 4620 (2008). H. Colfen, Macromol. Radpid Commun., 22, 219 (2001). K. Dayananda, C. He, D. K. Park, T. G. Park, and D. S. Lee, Polymer, 49, 4968 (2008). L. E. Bromberg and E. S. Ron, Adv. Drug Deliv. Rev., 31, 197 (1998). L. Yang and P. Alexandridis, Curr. Opin. Colloid Interface Sci., 5, 132 (2000). D. M. Faulkner, S. T. Sutton, J. D. Hesford, B. C. Faulkner, D. A. Major, T. B. Hellewell, M. M. Laughon, G. T. Rodeheaver, and R. F. Edlich, Am. J. Emerg. Med., 15, 20 (1997). J. M. Barichello, M. Morishita, K. Takayama, and T. Nagai, Int. J. Pharm., 184, 189 (1999). I. W. Kellaway and S. J. Warren, “Mucoadhesive Hydrogels for Buccal Delivery”, in Oral Mucosal Drug Delivery, M. J. Rathbone, Ed., Marcel Dekker, New York, 1996, pp 221. C. M. Lehr, J. A. Bouwstra, E. H. Schacht, and H. E. Junginger, Int. J. Pharm., 78, 43 (1992). P. Ferruti, I. Domini, R. Barbucci, M. C. Beni, E. Dispensa, S. Sancasciani, M. A. Marchisio, and M. C. Tanzi, Biomaterials, 4, 218 (1983). P. Ferruti, S. Bianchi, E. Ranucci, F. Chiellini, and V. Caruso, Macromol. Biosci., 5, 613 (2005). P. Ferruti, E. Ranucci, L. Sartore, F. Bignotti, M. A. Marchisio, P. Bianciardi, and F. M. Veronese, Biomaterials, 15, 1235 (1994). E. Ranucci, G. Spagnoli, P. Ferruti, D. Sgouras, and R. Duncan, J. Biomater. Sci. Polym. Ed., 2, 303 (1991). P. Ferruti and R. Barbucci, Adv. Polym. Sci., 58, 55 (1984). M. K. Nguyen, D. K. Park, and D. S. Lee, Biomacromolecules, 10, 728 (2009). E. E. Hassan and J. M. Gallo, Pharm. Res., 7, 491 (1990). S. Rossi, M. C. Bonferoni, G. Lippoli, M. Bertoni, F. Ferrari, C. Caramella, and U. Conte, Biomaterials, 16, 1073 (1995). D. S. Jones, C. R. Irwin, A. D. Woolfson, J. Djokic, and V. Adams, J. Pharm. Sci., 88, 592 (1999). M. K. Nguyen, H. C. Truc, and D. S. Lee, Polymer, 50, 5205 (2009). N. Salamat-Miller, M. Chittchang, and T. P. Johnston, Adv. Drug Deliv. Rev., 57, 1666 (2005).