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基于计算药学理论的水凝胶制剂设计与机制研究

Formulation design and mechanism study of hydrogel based on computational pharmaceutics theories.

作者信息

Dai Xingxing, Chen Liping, Liao Yuyao, Sheng Mengke, Qu Qingsong, Shi Yanshuang, Shi Xinyuan

机构信息

Beijing University of Chinese Medicine, No. 11 of North 3rd Ring East Road, Chaoyang District, Beijing, 100029, China; Key Laboratory for Production Process Control and Quality Evaluation of Traditional Chinese Medicine, Beijing Municipal Science & Technology Commission, Beijing, 100029, China.

Beijing University of Chinese Medicine, No. 11 of North 3rd Ring East Road, Chaoyang District, Beijing, 100029, China; Key Laboratory for Production Process Control and Quality Evaluation of Traditional Chinese Medicine, Beijing Municipal Science & Technology Commission, Beijing, 100029, China.

出版信息

J Mol Graph Model. 2022 Jan;110:108051. doi: 10.1016/j.jmgm.2021.108051. Epub 2021 Oct 14.

Abstract

Formulation design and mechanism study of the drug delivery system (DDS) is an important but difficult subject in pharmaceutical research. The study of formulation factors is the most time- and labor-consuming work of formulation design. In this paper, a multiscale computational pharmaceutics strategy was developed to guide the systematic study of formulation factors of a typical polymer-based DDS, hydrogel, and further to guide the formulation design. According to the strategy, the combination of solubility parameter (δ) and diffusion coefficient (D) calculated by the AA-MD simulation was suggested as the general evaluation method for the matrix screening of the hydrogels at the pre-formulation stage. At the formulation design stage, the CG-MD simulation method was suggested to predict the morphology and drug-releasing behavior of the hydrogels under different formulation factors. The influence mechanism can be explained by the combination of multiple parameters, such as the microstructure diagram, the radius of gyration (Rg), the radial distribution function (RDF), and the free diffusion volume (V). The simulation results are in good agreement with the in vitro release experiment, indicating that the strategy has good applicability.

摘要

药物递送系统(DDS)的制剂设计和作用机制研究是药物研究中一个重要但困难的课题。制剂因素研究是制剂设计中最耗时费力的工作。本文提出了一种多尺度计算药剂学策略,以指导对典型的基于聚合物的DDS(水凝胶)的制剂因素进行系统研究,并进一步指导制剂设计。根据该策略,建议将通过AA-MD模拟计算得到的溶解度参数(δ)和扩散系数(D)的组合作为制剂前阶段水凝胶基质筛选的通用评价方法。在制剂设计阶段,建议采用CG-MD模拟方法来预测不同制剂因素下水凝胶的形态和药物释放行为。其作用机制可以通过微观结构图、回转半径(Rg)、径向分布函数(RDF)和自由扩散体积(V)等多个参数的组合来解释。模拟结果与体外释放实验结果吻合良好,表明该策略具有良好的适用性。

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