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The Multiple Emulsion Entrapping Active Agent Produced via One-Step Preparation Method in the Liquid-Liquid Helical Flow for Drug Release Study and Modeling

机译:多乳液诱捕活性剂通过一步制备方法在液体螺旋流动中产生用于药物释放研究和建模

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The paper presents a theoretical mass transfer model of the release process of active agent from complex dispersed systems such as multiple emulsions, microemulsions, micro/ nanoparticles. The model is characterized by five parameters describing internal structure of the delivery system and the conditions of the release environment which enable the determination of the release rate and its sensitivity to the process parameters. The model was validated by experimental data of an active component release from two sets of multiple emulsions prepared via a novel one-step emulsification method in the continuous Couette-Taylor How contactor. The simulation of release profiles confirmed the importance of the internal multiple emulsions structure (drop size, packing volume) as well as the intensity of external mixing in the modeling of the controlled release process. The presented model allowed the mass released to be determined with satisfactory agreement with experimental data after optimization of parameters describing internal emulsions structure.
机译:本文介绍了来自复杂分散系统的活性剂释放过程的理论传质模型,例如多种乳液,微乳液,微/纳米粒子。该模型的特征在于描述递送系统的内部结构的五个参数和释放环境的条件,其能够确定释放速率及其对过程参数的敏感性。通过通过在连续的CoupTe-Taylor中的一组多种乳化方法中由两组多乳液制备的多种乳液的实验数据验证了该模型。释放型材的仿真证实了内部多乳液结构(跌落尺寸,包装体积)的重要性以及控制释放过程建模中的外部混合强度。呈现的模型允许质量释放以在描述内部乳液结构的参数优化后与实验数据进行令人满意的协议。

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