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Hierarchical Micro/Nanostructures of Natural Polymer for Release Process

机译:用于释放过程的分层微/纳米结构

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In this paper the modeling of drug release process from hierarchical dispersed systems such as nano and microparticles prepared by thermal cross-linking of multiple emulsions is described. The presented model considers the diffusion of a drug through spherical eroding natural polymer matrix and diffusion-convection of the drug in the surrounding medium. Simulated release profiles were compared with experimental data of the drug release from microspheres of various structures. The differences in microspheres structure resulted from changes in mixing intensity of the external surrounding. The simulations of release profiles confirmed the importance of the internal structure of microspheres as well as an intensity of external mixing in the modeling of the controlled release process. The presented model allowed the mass of drug released to be determined with satisfactory agreement with experimental data after optimization of parameters describing internal microspheres structure. The proposed model describing release process of a drug from microspheres can be applied for simulation of release profiles with phasic behavior (primary/lag and continuous release). The model simulations were extended to drug release from nanoparticles with satisfactory results.
机译:在本文中,描述了来自多个乳液的热交联制备的纳米和微粒等分层分散系统的药物释放过程的建模。本模型考虑了一种药物通过球面侵蚀天然聚合物基质和药物在周围培养基中的扩散对流的扩散。将模拟释放曲线与各种结构微球的药物释放的实验数据进行了比较。微球结构的差异因外围外围混合强度的变化而导致。释放型材的模拟证实了微球内部结构的重要性以及控制释放过程建模中的外部混合强度。呈现的模型允许释放的药物释放的药物以令人满意的协议在优化描述内部微球结构的参数之后与实验数据确定。描述来自微球的药物释放过程的所提出的模型可用于使用相位序列(初级/滞后和连续释放)模拟释放曲线。模型模拟扩展到纳米颗粒的药物释放,结果令人满意。

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