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Systematic Studies on Surface Erosion of Photocrosslinked Polyanhydride Tablets and Data Correlation with Release Kinetic Models

机译:光交联聚苯胺片表面侵蚀的系统研究及其与释放动力学模型的数据相关性

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摘要

Photocrosslinkable polyanhydrides that undergo surface erosion are suitable materials for controlled-release drug delivery systems. Investigating the impact of different parameters on their erosion behavior is essential before use in drug delivery systems. Although their synthesis is well-established, parameters that may substantially affect the erosion of thiol-ene polyanhydrides including temperature and pH of the media, the geometry of the polymers, and the media shaking rate (the convective force for the polymer erosion), have not yet been studied. This study explores the effects of different environmental and geometric parameters on mass loss (erosion) profiles of polyanhydrides synthesized by thiol-ene photopolymerization. A comparative study on several release kinetic models fitting is also described for a better understanding of the polymer erosion behavior. The results demonstrated that although the temperature was the only parameter that affected the induction period substantially, the mass-loss rate was influenced by the polymer composition, tablet geometry, temperature, pH, and mass transfer (shaking) rate. With regard to geometrical parameters, polymers with the same surface area to volume ratios showed similar mass loss trends despite their various volumes and surface areas. The mass loss of polyanhydride tablets with more complicated geometries than a simple slab was shown to be non-linear, and the kinetic model study indicated the dominant surface erosion mechanism. The results of this study allow for designing and manufacturing efficient delivery systems with a high-predictable drug release required in precision medicine using surface-erodible polyanhydrides.
机译:经受表面侵蚀的可光交联的聚酸酐是用于控释药物递送系统的合适材料。在药物输送系统中使用之前,调查不同参数对其腐蚀行为的影响至关重要。尽管已经很好地确定了它们的合成方法,但这些参数可能会实质上影响硫醇-烯多酸酐的腐蚀,包括介质的温度和pH,聚合物的几何形状以及介质的振荡速率(聚合物腐蚀的对流力)尚未研究。这项研究探讨了不同的环境和几何参数对硫醇-烯光聚合合成的酸酐的质量损失(侵蚀)分布的影响。还描述了对几种释放动力学模型拟合的比较研究,以更好地了解聚合物的腐蚀行为。结果表明,尽管温度是基本上影响诱导期的唯一参数,但是失质速率受聚合物组成,片剂几何形状,温度,pH和传质(振荡)速率的影响。关于几何参数,具有相同的表面积与体积比的聚合物尽管具有不同的体积和表面积,却显示出相似的质量损失趋势。与简单平板相比,具有更复杂几何形状的聚酸酐片的质量损失被证明是非线性的,动力学模型研究表明了主要的表面腐蚀机理。这项研究的结果允许设计和制造有效的递送系统,并使用表面易蚀的聚酸酐在精密医学中要求具有高度可预测的药物释放。

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