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聚乙二醇化壳聚糖水凝胶中双氯芬酸释放的理论模型。

Theoretical model for the diclofenac release from PEGylated chitosan hydrogels.

机构信息

Petru Poni Institute of Macromolecular Chemistry, Romanian Academy, Iasi, Romania.

Department of Physics, "Gh. Asachi" Technical University of Iasi, Iasi, Romania.

出版信息

Drug Deliv. 2021 Dec;28(1):261-271. doi: 10.1080/10717544.2021.1876181.

Abstract

Controlled drug delivery systems are of utmost importance for the improvement of drug bioavailability while limiting the side effects. For the improvement of their performances, drug release modeling is a significant tool for the further optimization of the drug delivery systems to cross the barrier to practical application. We report here on the modeling of the diclofenac sodium salt (DCF) release from a hydrogel matrix based on PEGylated chitosan in the context of Multifractal Theory of Motion, by means of a fundamental spinor set given by 2 × 2 matrices with real elements, which can describe the drug-release dynamics at global and local scales. The drug delivery systems were prepared by hydrogenation of PEGylated chitosan with citral in the presence of the DCF, by varying the hydrophilic/hydrophobic ratio of the components. They demonstrated a good dispersion of the drug into the matrix by forming matrix-drug entities which enabled a prolonged drug delivery behavior correlated with the hydrophilicity degree of the matrix. The application of the Multifractal Theory of Motion fitted very well on these findings, the fractality degree accurately describing the changes in hydrophilicity of the polymer. The validation of the model on this series of formulations encourages its further use for other systems, as an easy tool for estimating the drug release toward the design improvement. The present paper is a continuation of the work 'A theoretical mathematical model for assessing diclofenac release from chitosan-based formulations,' published in , 27(1), 2020, that focused on the consequences induced by the invariance groups of Multifractal Diffusion Equations in correlation with the drug release dynamics.

摘要

控释给药系统对于提高药物生物利用度同时限制副作用至关重要。为了改善其性能,药物释放建模是进一步优化药物输送系统以克服实际应用障碍的重要工具。在这里,我们报告了基于聚乙二醇化壳聚糖的水凝胶基质中双氯芬酸钠(DCF)释放的建模,该建模基于运动多重分形理论,使用由具有实元素的 2×2 矩阵组成的基本旋量集,可以描述全局和局部尺度的药物释放动力学。药物输送系统是通过在 DCF 存在下用柠檬醛氢化聚乙二醇化壳聚糖制备的,通过改变各组分的亲水性/疏水性比来制备。通过形成基质-药物实体,药物在基质中得到了很好的分散,从而使药物释放行为延长,与基质的亲水性程度相关。运动多重分形理论的应用非常符合这些发现,分形程度准确地描述了聚合物亲水性的变化。该模型在这一系列配方上的验证鼓励将其进一步用于其他系统,作为估计药物释放以改善设计的简便工具。本文是 2020 年发表在《高分子科学杂志》27(1)上的论文“用于评估基于壳聚糖制剂中双氯芬酸释放的理论数学模型”的续篇,该论文重点研究了多重分形扩散方程不变群与药物释放动力学之间的相关性所引起的后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1854/7850333/1fb2a1580f18/IDRD_A_1876181_SCH0001_C.jpg

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