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The Influence of 1-Butanol and Trisodium Citrate Ion on Morphology and Chemical Properties of Chitosan-Based Microcapsules during Rigidification by Alkali Treatment

机译:1-丁醇和柠檬酸三钠对碱处理硬化壳聚糖基微胶囊形态和化学性质的影响

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摘要

Linseed oil which has various biomedical applications was encapsulated by chitosan (Chi)-based microcapsules in the development of a suitable carrier. Oil droplets formed in oil-in-water emulsion using sodium dodecyl sulfate (SDS) as emulsifier was stabilized by Chi, and microcapsules with multilayers were formed by alternate additions of SDS and Chi solutions in an emulsion through electrostatic interaction. No chemical cross-linker was used in the study and the multilayer shell membrane was formed by ionic gelation using Chi and SDS. The rigidification of the shell membrane of microcapsules was achieved by alkali treatment in the presence of a small amount of 1-butanol to reduce aggregation. A trisodium citrate solution was used to stabilize the charge of microcapsules by ionic cross-linking. Effects of butanol during alkali treatment and citrate in post alkali treatment were monitored in terms of morphology and the chemical properties of microcapsules. Various characterization techniques revealed that the aggregation was decreased and surface roughness was increased with layer formation.
机译:在开发合适的载体时,通过壳聚糖(Chi)基微囊将具有多种生物医学应用的亚麻籽油包裹起来。使用十二烷基硫酸钠(SDS)作为乳化剂的水包油型乳剂中形成的油滴可通过Chi稳定化,通过在乳剂中通过静电相互作用交替添加SDS和Chi溶液而形成具有多层的微囊。研究中未使用化学交联剂,并且使用Chi和SDS通过离子凝胶化形成了多层壳膜。通过在少量1-丁醇的存在下进行碱处理以减少聚集,来实现微胶囊壳膜的刚性化。柠檬酸三钠溶液用于通过离子交联来稳定微胶囊的电荷。在形态和微胶囊的化学性质方面监测了丁醇在碱处理过程中的影响以及柠檬酸在碱处理后的影响。各种表征技术表明,随着层的形成,聚集减少,表面粗糙度增加。

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