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A novel method for the production of core-shell microparticles by inverse gelation optimized with artificial intelligent tools

机译:用人工智能工具优化逆凝胶生产核壳微粒的新方法

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摘要

Numerous studies have been focused on hydrophobic compounds encapsulation as oils. In fact, oils can provide numerous health benefits as synergic ingredient combined with other hydrophobic active ingredients. However, stable microparticles for pharmaceutical purposes are difficult to achieve when commonly techniques are used. In this work, sunflower oil was encapsulated in calcium-alginate capsules by prilling technique in co-axial configuration. Core-shell beads were produced by inverse gelation directly at the nozzle using a w/o emulsion containing aqueous calcium chloride solution in sunflower oil pumped through the inner nozzle while an aqueous alginate solution, coming out from the annular nozzle, produced the beads shell. To optimize process parameters artificial intelligence tools were proposed to optimize the numerous prilling process variables. Homogeneous and spherical microcapsules with narrow size distribution and a thin alginate shell were obtained when the parameters as w/o constituents, polymer concentrations, flow rates and frequency of vibration were optimized by two commercial software, FormRules (R) and INForm (R), which implement neurofuzzy logic and Artificial Neural Networks together with genetic algorithms, respectively. This technique constitutes an innovative approach for hydrophobic compounds microencapsulation.
机译:许多研究都集中在疏水性化合物封装为油。事实上,油可以提供许多健康益处的协同成分与其他疏水性活性成分结合。然而,对于药物目的稳定微粒难以普遍使用技术时实现。在这项工作中,向日葵油状物通过在同轴配置的造粒技术封装在钙 - 藻酸盐胶囊。核 - 壳珠通过逆胶凝直接在喷嘴使用产生的w / o乳液含有在通过内喷嘴泵送葵花油氯化钙水溶液而水溶液藻酸盐溶液,从环形喷嘴出来,所产生的珠壳。为了优化工艺参数的人工智能工具,提出了优化的众多造粒过程变量。当参数W / O型的组分,聚合物浓度,流速和振动的频率是由两个商业软件,FormRules(R)进行了优化,并通知(R),得到具有窄尺寸分布和薄藻酸盐壳均匀球形微胶囊,它们一起实现模糊神经逻辑和神经网络与遗传算法,分别。这种技术构成了用于疏水性化合物微胶囊化的创新方法。

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