Novel alginate hydrogel core-shell systems for combination delivery of ranitidine HCl and aceclofenac

作者:Jana Sougata; Samanta Abhijit; Nayak Amit Kumar; Sen Kalyan Kumar; Jana Subrata
来源:International Journal of Biological Macromolecules, 2015, 74: 85-92.
DOI:10.1016/j.ijbiomac.2014.11.027

摘要

A novel hydrogel system was successfully developed based on core-shell approach for the delivery of ranitidine HCl and aceclofenac. Aceclofenac-loaded alginate microspheres coated with eudragit L-100 was used as core material and that of freeze-thaw cross-linked chitosan-PVA gels containing ranitidine HCl served as the shell-forming material. The alginate microspheres coated with eudragit L-100 showed drug encapsulation efficiency of 56.06 +/- 1.12 to 68.03 +/- 2.16% and had average particle sizes of 551.29 +/- 25.92 to 677.18 +/- 27.05 mu m. The viscosity of chitosan-PVA gels ranged between 505.74 +/- 1.04 and 582.41 +/- 2.09, cps. The formulations were characterized by FTIR, SEM and polarized microscopy analyses. The release of ranitidine HCl was comparatively higher in acidic medium (pH 1.2) than in alkaline medium (pH 7.4). The release of aceclofenac became slower in alkaline medium (pH 7.4) and continued up to 3.5 h. Super case-II transport mechanism was assumed for the release of ranitidine HCl in both media; whereas non-Fickian (anomalous) diffusion mechanism predominated in the release of aceclofenc. Thus, hydrogel-based core-shell formulations were found suitable for simultaneous delivery of aceclofenac and ranitidine HCl which could minimize the chances of excessive gastric acid secretion through suitable ranitidine HCl release in gastric region.

  • 出版日期2015-3