Controlled release of highly water-soluble antidepressant from hybrid copolymer poly vinyl alcohol hydrogels

被引:0
作者
Liaqat Ali
Mahmood Ahmad
Muhammad Usman
Muhammad Yousuf
机构
[1] The Islamia University of Bahawalpur,Department of Pharmacy, Faculty of Pharmacy and Alternative Medicine
来源
Polymer Bulletin | 2014年 / 71卷
关键词
Poly vinyl alcohol; Hydrogels; Controlled release; Porosity; Cumulative release; Swelling ratio; Diffusion mechanism;
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中图分类号
学科分类号
摘要
This paper reports the development of hybrid copolymer poly vinyl alcohol hydrogel (H-PVA) based on acrylic acid (AA), 2-acrylamido-2-methyl propane sulfonic acid (AMPSA) and ethylene glycol dimethacrylate (EGDMA). The H-PVA hydrogels were used for controlled release study of highly water-soluble antidepressant drug (venlafaxine). The formation of new structure was confirmed by Fourier transform infrared spectroscopy. The morphology of dry hydrogel slabs was examined by scanning electron microscopy. Thermal gravimetric analysis of hydrogels showed that there was an increase in thermal stability of H-PVA hydrogels. Swelling experiments performed in acidic and basic media provided important information on drug release properties of hydrogels. The release of venlafaxine was significantly retarded in pH 1.2, while rapid release was observed in pH 7.4. The release rate of venlafaxine increased with increasing ratio of AA and AMPSA. However, extent of drug release was significantly reduced on increasing ratio of EGDMA. Mechanism of release has been analyzed using various mathematical models. H-PVA hydrogel slabs were able to sustain the release of venlafaxine more than 20 h. The results of the study suggest that optimized H-PVA hydrogels could serve as suitable controlled release matrices.
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页码:31 / 46
页数:15
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  • [1] Amin MCIM(2012)Synthesis and characterization of thermo- and pH-responsive bacterial cellulose/acrylic acid hydrogels for drug delivery Carbohydr Polym 88 465-473
  • [2] Ahmad N(2011)Nanoreinforced biocompatible hydrogels from wood hemicelluloses and cellulose whiskers Carbohydr Polym 86 192-201
  • [3] Halib N(2008)Hydrogel nanoparticles in drug delivery Adv Drug Deliv Rev 60 1638-1649
  • [4] Ahmad I(2007)Hydrogels for tissue engineering and delivery of tissue-inducing substances J Pharm Sci 96 2197-2223
  • [5] Karaaslan MA(2008)Biodegradable and pH-sensitive hydrogels for potential colon-specific drug delivery:characterization and in vitro release studies Biomacromolecules 9 43-49
  • [6] Tshabalalab MA(2006)Thermo- and pH-responsive polymers in drug delivery Adv Drug Deliv Rev 58 1655-1670
  • [7] Yelle DJ(2012)Swelling kinetics of polymer gels: comparison of linear and nonlinear theories Soft Matter 8 8194-8203
  • [8] Buschle-Diller G(2011)Structural parameters and swelling behavior of pH sensitive poly(acrylamide-co-acrylic acid)hydrogels Chem Biochem Eng Q 25 181-194
  • [9] Hamidi M(2009)Sulfasalazine release from alginate-N, O-carboxymethyl chitosan gel beads coated by chitosan Carbohydr Polym 77 326-330
  • [10] Azadi A(2006)Hydrogels in controlled release formulations: network design and mathematical modeling Adv Drug Deliv Rev 58 1379-1408