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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Pectin-gelatin and alginate-gelatin complex coacervation for controlled drug delivery: Influence of anionic polysaccharides and drugs being encapsulated on physicochemical properties of microcapsules
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Pectin-gelatin and alginate-gelatin complex coacervation for controlled drug delivery: Influence of anionic polysaccharides and drugs being encapsulated on physicochemical properties of microcapsules

机译:果胶-明胶和藻酸盐-明胶复合物凝聚可控制药物输送:阴离子多糖和被包封的药物对微胶囊理化性质的影响

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摘要

Microencapsulations using pectin and alginate by complex coacervation with gelatin were studied using metronidazole hydrochloride (MH), diclofenac sodium (DS) and indomethacin (IM) as core material. MH was poorly encapsulated (4-7% w/w) than DS (49-53% w/w) and IM (62-66% w/w). Pectin produced coacervation with gelatin with all acidifiers but alginate produced coacervation only with acetic acid. Addition of sodium carboxymethyl cellulose reduced aggregation between the micropartides. FT-IR confirmed the complexation between pectin or alginate with gelatin and intact nature of encapsulated drug. Microencapsulation of MH produced microspheres and DS/IM resulted in irregular particles. Alginate-gelatin produced smaller micropartides than pectin-gelatin. DSC of microcapsules revealed change in physical nature of DS whereas IM produced no changes. The microcapsules showed low drug release in gastric fluid and sustained release in intestinal fluid. Alginate was better than pectin for coacervation with gelatin in terms of less aggregation, smaller particle size and easy dispersion.
机译:以甲硝唑盐酸盐(MH),双氯芬酸钠(DS)和消炎痛(IM)为核心材料,研究了果胶和藻酸盐与明胶的复合凝聚微囊化工艺。与DS(49-53%w / w)和IM(62-6%w / w)相比,MH的封装质量差(4-7%w / w)。果胶与所有酸化剂均与明胶产生凝聚作用,但藻酸盐仅与乙酸产生凝聚作用。羧甲基纤维素钠的加入减少了微粒之间的聚集。 FT-IR证实果胶或藻酸盐与明胶之间的络合和包封药物的完整性质。 MH产生的微球和DS / IM的微囊封装导致不规则颗粒。海藻酸盐-明胶产生的微粒比果胶-明胶小。微胶囊的DSC显示DS的物理性质发生了变化,而IM则没有变化。微胶囊在胃液中显示出低药物释放,而在肠液中持续释放。与明胶凝聚相比,藻酸盐比果胶更好,因为它具有较少的聚集,较小的粒径和易于分散的特性。

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