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In vitro release kinetics model fitting of liposomes: An insight

机译:脂质体的体外释放动力学模型拟合:见解

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Liposomes are emerging cargoes for bioactive delivery owing to their widely accepted biocompatible and biodegradable nature. It is always a challenge to control the release of payload for effective delivery to the site of interest. Over the couple of decennia, mathematical modeling of release process is a need of time whether the drug remains in the circulation or reaches at the target site. For establishing a better in vitro in vivo correlation, release kinetics models viz. Peppas, Higuchi, Weibull, Zero Order and First order including mechanistic models like All-or-None, Toroidal, and Biomembrane models etc. are continuously exploited to predict drug release profile. Most of these models rely on the diffusion equations based on the composition of liposomes and conditions of release. Here, we summarized the crucial reports exploring these models and associated interventions to know the underlying physicochemical release phenomenon. Such mathematical model fitting can be a promising approach to deduce release/delivery process to help in designing the safe and efficacious ("Smart") liposomes. (C) 2016 Elsevier Ireland Ltd. All rights reserved.
机译:脂质体因其广泛的生物相容性和可生物降解性而成为新兴的生物活性物质。控制有效载荷的释放以有效地传送到目标站点始终是一个挑战。在过去的数十年中,释放过程的数学模型是药物需要保留在循环系统中还是到达目标部位所需要的时间。为了建立更好的体外体内相关性,释放动力学模型即。不断利用Peppas,Higuchi,Weibull,零阶和一阶(包括全或无,环面和生物膜模型等机械模型)来预测药物释放曲线。这些模型大多数依赖于基于脂质体组成和释放条件的扩散方程式。在这里,我们总结了探索这些模型和相关干预措施以了解潜在的理化释放现象的重要报告。这种数学模型拟合可以是推断释放/递送过程以帮助设计安全有效的(“智能”)脂质体的有前途的方法。 (C)2016 Elsevier Ireland Ltd.保留所有权利。

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