Ben Messaoud Ghazi, Sánchez-González Laura, Probst Laurent, Desobry Stéphane
Université de Lorraine, LIBio, ENSAIA, 2 avenue de la Forêt de Haye, TSA 40602, F-54505 Vandœuvre-lès-Nancy, France.
Cookal Company, 21 avenue de la Meurthe, 54320 Maxéville, France.
J Colloid Interface Sci. 2016 May 1;469:120-128. doi: 10.1016/j.jcis.2016.02.018. Epub 2016 Feb 10.
To enhance physicochemical properties of alginate aqueous-core capsules, conventional strategies were focused in literature on designing composite and coated capsules. In the present study, own effect of liquid-core composition on mechanical and release properties was investigated.
Capsules were prepared by dripping a CaCl2 solution into an alginate gelling solution. Viscosity of CaCl2 solution was adjusted by adding cationic, anionic and non-ionic naturally derived polymers, respectively chitosan, xanthan gum and guar gum. In parallel, uniform alginate hydrogels were prepared by different methods (pouring, in situ forming and mixing). Mechanical stability of capsules and plane hydrogels were respectively evaluated by compression experiments and small amplitude oscillatory shear rheology and then correlated. Capsules permeability was evaluated by monitoring diffusion of encapsulated cochineal dye, riboflavin and BSA. The core-shell interactions were investigated by ATR-FTIR.
Results showed that inner polymer had an impact on membrane stability and could act as an internal coating or provide mechanical reinforcement. Mechanical properties of alginate capsules were in a good agreement with rheological behavior of plane hydrogels. Release behavior of the entrapped molecules changed considerably. This study demonstrated the importance of aqueous-core composition, and gave new insights for possible adjusting of microcapsules physicochemical properties by modulating core-shell interactions.
为了增强藻酸盐水性核胶囊的物理化学性质,文献中的传统策略主要集中在设计复合胶囊和包衣胶囊上。在本研究中,研究了液芯组成对机械性能和释放性能的自身影响。
通过将氯化钙溶液滴入藻酸盐凝胶溶液中来制备胶囊。分别通过添加阳离子、阴离子和非离子天然衍生聚合物(壳聚糖、黄原胶和瓜尔胶)来调节氯化钙溶液的粘度。同时,通过不同方法(倾倒、原位形成和混合)制备均匀的藻酸盐水凝胶。分别通过压缩实验和小振幅振荡剪切流变学评估胶囊和平面水凝胶的机械稳定性,然后进行相关性分析。通过监测包封的胭脂虫红染料、核黄素和牛血清白蛋白的扩散来评估胶囊的渗透性。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)研究核-壳相互作用。
结果表明,内部聚合物对膜稳定性有影响,可作为内部包衣或提供机械增强作用。藻酸盐胶囊的机械性能与平面水凝胶的流变行为高度一致。包封分子的释放行为发生了显著变化。本研究证明了水性核组成的重要性,并为通过调节核-壳相互作用来调整微胶囊物理化学性质提供了新的见解。