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Evaluation of the Impacts of Formulation Variables and Excipients on the Drug Release Dynamics of a Polyamide 610-Based Monolithic Matrix Using Mathematical Tools

机译:使用数学工具评估配方变量和赋形剂对聚酰胺610基单块基质药物释放动力学的影响

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摘要

Drug release from hydrophilic matrices is regulated mainly by polymeric erosion, disentanglement, dissolution, swelling front movement, drug dissolution and diffusion through the polymeric matrix. These processes depend upon the interaction between the dissolution media, polymeric matrix and drug molecules, which can be significantly influenced by formulation variables and excipients. This study utilized mathematical parameters to evaluate the impacts of selected formulation variables and various excipients on the release performance of hydrophilic polyamide 6,10 (PA 6,10) monolithic matrix. Amitriptyline HCl and theophylline were employed as the high and low solubility model drugs, respectively. The incorporation of different excipient concentrations and changes in formulation components influenced the drug release dynamics as evidenced by computed mathematical quantities (tx%, MDTx%,f1, f2, k1, k2, and КF). The effects of excipients on drug release from the PA 6,10 monolithic matrix was further elucidated using static lattice atomistic simulations wherein the component energy refinements corroborates the in vitro and in silico experimental data. Consequently, the feasibility of modulating release kinetics of drug molecules from the novel PA 6,10 monolithic matrix was well suggested.
机译:从亲水性基质释放的药物主要受聚合物腐蚀,解缠结,溶解,溶胀前移,药物溶解和通过聚合物基质扩散的调节。这些过程取决于溶出介质,聚合物基质和药物分子之间的相互作用,这可能会受到配方变量和赋形剂的显着影响。这项研究利用数学参数来评估所选配方变量和各种赋形剂对亲水性聚酰胺6,10(PA 6,10)整体基质释放性能的影响。盐酸阿米替林和茶碱分别用作高溶解度和低溶解度模型药物。通过计算的数学量(tx%,MDTx%,f1,f2,k1,k2和КF)可以证明,不同赋形剂浓度的加入和制剂成分的变化影响了药物释放动力学。使用静态晶格原子模拟进一步阐明了赋形剂对药物从PA 6,10整体基质中释放的影响,其中组分能量的细化证实了体外和计算机实验数据。因此,很好地提出了调节药物分子从新型PA 6,10整体基质中释放动力学的可行性。

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