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Multi-layered Gelatin/Acacia Microcapsules by Complex Coacervation Method

机译:复凝聚法制备多层明胶/相思微胶囊

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References(12) Cited-By(10) Microencapsulation of biphenyl was carried out by varying the colloid concentration to investigate the microencapsulation of large oil droplets by the complex coacervation method. In dilute colloid solutions, the traditional model of the complex coacervation method is supported where coacervate droplets formed in the bulk solution adhere to oil droplets. However, in a solution of 3.0 wt% colloid, it was clarified that the microcapsule membrane was formed not by adhesion of the full-grown coacervate droplets, but by growth of small coacervate droplets adhering to oil droplets.Spherical gelatine/acacia microcapsules with thicker membrane were successfully prepared by repeating the conventional complex coacervation method. The affinity of coacervate droplets to a core material is found to be a dominant factor in microencapsulation in the complex coacervation method.The multi-layered microcapsules endured the release of encapsulated biphenyl, however the single-layered microcapsules were ruptured within a short time in release experiments, and a serious initial burst was induced. The multi-layered microcapsules prepared by repeating the conventional complex coacervation can be applied as a dosage form in the controlled release of active agents.
机译:参考文献(12)引用(10)通过改变胶体浓度对联苯进行微囊化,以研究通过复合凝聚法对大油滴的微囊化。在稀胶体溶液中,支持复杂凝聚方法的传统模型,其中在本体溶液中形成的凝聚液滴附着在油滴上。然而,在3.0 wt%胶体的溶液中,澄清了微胶囊膜的形成不是通过完整的凝聚层液滴的粘附,而是通过粘附在油滴上的凝聚层小液滴的生长而形成的。重复常规复合凝聚法成功制备了膜。在凝聚过程中,凝聚层液滴对核心材料的亲和力是微囊化的主要因素。多层微胶囊可以忍受囊化的联苯的释放,但是单层微囊在释放后的短时间内破裂实验,并引发了严重的初始爆发。通过重复常规的复合凝聚制备的多层微胶囊可以以剂型形式用于活性剂的控释中。

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