不同代壳聚糖丙烯酰胺基超孔水凝胶的体外释药比较。

ISRN Pharmaceutics Pub Date : 2013-07-29 eCollection Date: 2013-01-01 DOI:10.1155/2013/624841
Shikha Bhalla, Manju Nagpal
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引用次数: 21

摘要

本研究的目的是利用气吹法制备和评价不同代丙烯酰胺和壳聚糖的超孔水凝胶(SPH),并对其溶胀、力学性能、FTIR、SEM、XRD和体外释药性能进行评价。所用原料为丙烯酰胺、N,N'-亚甲基双丙烯酰胺、壳聚糖、Pluronic F127、硫酸铵-N,N,N',N'-四亚甲二胺、碳酸氢钠。所有的配料依次搅拌均匀。研究了不同干燥条件对SPH性能的影响。扫描电镜研究表明,乙醇处理的批料由于均匀的孔隙而表现出最大的膨胀特性。所有批次的平衡膨胀时间均小于10 min。冻干导致密度降低,孔隙率和空隙率数据也证实了这一点。由于交联聚合物网络的存在,超多孔水凝胶互穿网络具有最大的机械强度。2 h后释放70%,24 h后持续释放。体外药物释放动力学表明,药物通过扩散释放,并遵循Super Case II转运,药物释放机制尚不清楚。超多孔水凝胶互穿网络可以成功地作为缓释胃保留装置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparison of various generations of superporous hydrogels based on chitosan-acrylamide and in vitro drug release.

Comparison of various generations of superporous hydrogels based on chitosan-acrylamide and in vitro drug release.

Comparison of various generations of superporous hydrogels based on chitosan-acrylamide and in vitro drug release.

Comparison of various generations of superporous hydrogels based on chitosan-acrylamide and in vitro drug release.

The aim of the current research work was to prepare and evaluate different generations of superporous hydrogels (SPH) of acrylamide and chitosan using gas blowing technique and evaluate them for swelling, mechanical properties, FTIR, SEM, XRD, and in vitro drug release. The ingredients used were acrylamide, N,N'-methylene bisacrylamide, chitosan, Pluronic F127, ammonium per sulfate-N,N,N',N'-tetramethylenediamine, and sodium bicarbonate. All ingredients were mixed sequentially with thorough stirring. The effect of different drying conditions on properties of SPH was also evaluated. Ethanol treated batched showed maximum swelling properties due to uniform pores as indicated in SEM studies. Equilibrium swelling time was less than 10 min in all batches. Freeze drying led to lowering of density which is also supported by porosity and void fraction data. Maximum mechanical strength was found in superporous hydrogel interpenetrating networks due to crosslinked polymeric network. 70% drug was released at the end of 2 h, and further the release was sustained till the end of 24 h. In vitro drug release kinetics showed that drug release occurs by diffusion and follows Super Case II transport indicating that mechanism of drug release is not clear. Superporous hydrogel interpenetrating networks can be successfully used as sustained release gastroretentive devices.

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