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首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >Mathematical Modeling of Vesicle Drug Delivery Systems 1: Vesicle Formation and Stability Along with Drug Loading and Release
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Mathematical Modeling of Vesicle Drug Delivery Systems 1: Vesicle Formation and Stability Along with Drug Loading and Release

机译:囊泡药物输送系统的数学模型1:囊泡的形成和稳定性以及药物的装载和释放

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摘要

Vesicles represent an important class of nanoscale drug delivery vehicles. To significantly reduce the time and resources that are required to optimize these drug carriers, this review article discusses the mathematical models that have been derived for understanding the formation of vesicles and their stability, as well as for predicting drug loading and their release. With regard to vesicle formation and stability, the packing parameter can be used to predict how the solution environment, surfactant composition, and surfactant molecular architecture can influence the supermolecular self-assembled structures that are formed from amphiphiles. In the context of drug delivery, this is useful for facilitating vesicle formation and stability during transit through the body. At the target site, this information can be used to help trigger a rapid release of the drug. With regard to drug loading, kinetic and equilibrium models provide guidelines for appropriate pH conditions and drug incubation times during loading. The diffusivity, partition coefficient, and bilayer thickness also play significant roles during loading and release of the drug. Our hope is that more researchers in this exciting field will complement their experimental approaches with these mathematical models to more efficiently develop vesicle-based drug carriers.
机译:囊泡代表了一类重要的纳米级药物递送载体。为了显着减少优化这些药物载体所需的时间和资源,本文将讨论为理解小泡的形成及其稳定性以及预测载药量及其释放而衍生的数学模型。关于囊泡的形成和稳定性,填充参数可用于预测溶液环境,表面活性剂组成和表面活性剂分子结构如何影响由两亲物形成的超分子自组装结构。在药物递送的情况下,这有助于在穿过身体的过程中促进囊泡形成和稳定。在目标位置,此信息可用于帮助触发药物的快速释放。关于药物装载,动力学和平衡模型为装载期间适当的pH条件和药物孵育时间提供了指导。在药物的加载和释放过程中,扩散率,分配系数和双层厚度也起着重要作用。我们希望,在这个令人兴奋的领域中,更多的研究人员将用这些数学模型来补充他们的实验方法,从而更有效地开发基于囊泡的药物载体。

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