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首页> 外文期刊>International Journal of Pharmaceutics >Starch-free grewia gum matrices: Compaction, swelling, erosion and drug release behaviour
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Starch-free grewia gum matrices: Compaction, swelling, erosion and drug release behaviour

机译:无淀粉的生长胶基质:压实,膨胀,侵蚀和药物释放行为

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摘要

Polysaccharides are suitable for application as hydrophilic matrices because of their ability to hydrate and swell upon contact with fluids, forming a gel layer which controls drug release. When extracted from plants, polysaccharides often contain significant quantities of starch that impacts upon their functional properties. This study aimed to evaluate differences in swelling, erosion and drug release from matrix tablets prepared from grewia gum (GG) and starch-free grewia gum (GDS) extracted from the stems of Grewia mollis. HPMC was used as a control polymer with theophylline as a model drug. Swelling, erosion, and in-vitro release were performed in deionized water, pH 1.2 and pH 6.8 media. The Vergnaud and Krosmeyer-Peppas model were used for swelling and drug release kinetics, respectively. However, linear regression technique was used to determine the erosion rate. GDS compacts were significantly harder than the native GG and HPMC compacts. GDS matrices exhibited the fastest erosion and drug release in deionised water and phosphate buffer compared with the GG and HPMC. At pH 1.2, GDS exhibited greater swelling than erosion, and drug release was similar to GG and HPMC. This highlights the potential of GDS as a matrix for controlled release similar to HPMC and GG at pH 1.2 but with a more rapid release at pH 6.8. GDS may have wider application in reinforcing compacts with relatively low mechanical strength. (C) 2015 Elsevier B.V. All rights reserved.
机译:多糖适合用作亲水性基质,因为它们具有在与液体接触时发生水合和溶胀,形成控制药物释放的凝胶层的能力。从植物中提取时,多糖通常含有大量淀粉,影响其功能特性。这项研究的目的是评估基质胶的溶胀,腐蚀和药物释放的差异,基质胶由生长胶(Grewia mollis)的茎中提取的生长胶(GG)和不含淀粉的生长胶(GDS)制成。 HPMC用作对照聚合物,茶碱作为模型药物。在pH 1.2和pH 6.8的去离子水中进行溶胀,腐蚀和体外释放。 Vergnaud模型和Krosmeyer-Peppas模型分别用于溶胀和药物释放动力学。但是,使用线性回归技术确定腐蚀速率。 GDS压缩比原生GG和HPMC压缩要硬得多。与GG和HPMC相比,GDS基质在去离子水和磷酸盐缓冲液中表现出最快的腐蚀和药物释放。在pH 1.2时,GDS的溶胀大于侵蚀,并且药物释放类似于GG和HPMC。这突显了GDS作为类似pHMC 1.2的HPMC和GG的控释基质的潜力,但在pH 6.8时释放更快。 GDS在具有较低机械强度的增强压块方面可能具有更广泛的应用。 (C)2015 Elsevier B.V.保留所有权利。

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