首页> 外文期刊>Bulletin of pharmaceutical sciences >CHITOSAN POLYMER AS A COAT OF CALCIUM ALGINATE MICROCAPSULES LOADED BY NON-STEROIDAL ANTI-INFLAMMATORY DRUG
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CHITOSAN POLYMER AS A COAT OF CALCIUM ALGINATE MICROCAPSULES LOADED BY NON-STEROIDAL ANTI-INFLAMMATORY DRUG

机译:壳聚糖聚合物作为非甾体抗炎药加载的藻酸钙微胶囊的涂层

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In a trial to delay the release rate of diclofenac sodium from alginate coated microcapsules, the use of a copolymer was suggested. Mixtures of polymers can have a significant properties than that of individual polymer to achieve sustained release microcapsules. On considering the negative charge of alginate and its ability to form poly ionic complexes with a lowered tendency of erosion at higher pH value, a cationic polymer was seeked. Chitosan (CS) was the one of choice due to the similarity of the saccharide structures of chitosan and alginate that offers greater interaction between the two polymers and stronger inter-chains reactions relative to that between alginate and branched polymers such as polylysine. The microcapsules prepared using 0.1 and 0.25% (CS) were spherical in shape while 0.4% (CS) formed microcapsules having rounded heads and tapered tails. The change in chitosan concentration had a non-significant effect on the particle size, the yield and the drug loading efficiency. The releaser ate of diclofenac sodium from microspheres showed a pH-dependent profile and was affected by chitosan coating. The release rate of diclofenac sodium from chitosan coated alginate microcapsules at pH 7.4 was found to be faster than its release at pH 1.2. These results suggest this coating method to protect diclofenac sodium under acidic conditions and to permit a complete but controlled release of diclofenac sodium.
机译:在延缓双氯芬酸钠从藻酸盐包被的微胶囊中释放速率的试验中,建议使用共聚物。聚合物的混合物比单独的聚合物具有显着的性能,以实现缓释微胶囊。考虑到藻酸盐的负电荷及其在较高pH值下形成具有降低的腐蚀趋势的聚离子络合物的能力,寻求了阳离子聚合物。壳聚糖(CS)是选择的一种,因为壳聚糖和藻酸盐的糖结构相似,与藻酸盐和支链聚合物(例如聚赖氨酸)之间的相互作用相比,壳聚糖和藻酸盐的糖结构相似,可在两种聚合物之间提供更大的相互作用,并具有更强的链间反应。用0.1和0.25%(CS)制备的微囊是球形的,而0.4%(CS)形成具有圆形头部和锥形尾部的微囊。壳聚糖浓度的变化对粒径,收率和载药效率没有显着影响。双氯芬酸钠从微球的释放速率显示出pH依赖性,并受到壳聚糖包衣的影响。发现在pH 7.4下双氯芬酸钠从壳聚糖包被的藻酸盐微胶囊中的释放速率要快于其在pH 1.2时的释放速率。这些结果表明该包衣方法在酸性条件下保护双氯芬酸钠并允许双氯芬酸钠完全但受控地释放。

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