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含丁香油的壳聚糖基核壳微胶囊的制备与表征

Preparation and Characterization of Chitosan-Based Core-Shell Microcapsules Containing Clove Oil.

作者信息

Jiang Ping, Li Duxin, Xiao Ya, Yang Xingxing, Liu Yuejun

出版信息

J Nanosci Nanotechnol. 2015 Jan;15(1):600-5. doi: 10.1166/jnn.2015.8767.

Abstract

The biodegradable microcapsules based on chitosan for a controlled delivery of clove oil were prepared by the single coagulation process. The effect of chitosan concentration, core to shell ratio, types of emulsifier, flocculating agent and hardening agent on the microcapsule diameter and the particle size distribution of microcapsule were investigated. The optimized conditions for the preparation of microcapsules with well-defined structure and narrow dispersibility were under that (1) the concentration of chitosan was 1.0 wt%, (2) clove oil to chitosan ratio was 75:25, (3) OP-10 and 10 wt% sodium sulfate were used as emulsifier and flocculating agent respectively, and (4) the concentration hardening agent glyoxal was 1 wt% based on the weight of chitosan. The uniform spherical structures with smooth surfaces with a particle size distribution of 1-15 μm were evidenced by SEM images of microcapsules. Core-shell, hetero-structures were confirmed by optical micrograph. The chemical component of the microcapsules was determined by FTIR. Thermal analysis showed the microcapsules were thermally stable below 150 degrees C. It was found that the pH value and temperature play important roles on the release rate of clove oil from the microcapsules. The release volume of clove oil from microcapsules at pH = 7, and pH = 10 were smaller than that at pH = 2. And the release volume of Clove oil from microcapsules at 60 degrees C was smaller than that at 20 degrees C and 40 degrees C, which showed a sustained and prolonged release.

摘要

采用单凝聚法制备了基于壳聚糖的可生物降解微胶囊用于丁香酚的控释。研究了壳聚糖浓度、核壳比、乳化剂类型、絮凝剂和固化剂对微胶囊直径及粒径分布的影响。制备具有明确结构和窄分散性微胶囊的优化条件如下:(1)壳聚糖浓度为1.0 wt%;(2)丁香酚与壳聚糖的比例为75:25;(3)分别使用OP-10和10 wt%的硫酸钠作为乳化剂和絮凝剂;(4)固化剂乙二醛的浓度基于壳聚糖重量为1 wt%。微胶囊的扫描电子显微镜图像证明了其具有粒径分布为1-15μm、表面光滑的均匀球形结构。光学显微镜确认了核壳异质结构。通过傅里叶变换红外光谱确定了微胶囊的化学成分。热分析表明微胶囊在150℃以下具有热稳定性。发现pH值和温度对丁香酚从微胶囊中的释放速率起着重要作用。丁香酚在pH = 7和pH = 10时从微胶囊中的释放量小于在pH = 2时的释放量。并且丁香酚在60℃时从微胶囊中的释放量小于在20℃和40℃时的释放量,呈现出持续和延长释放的特性。

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