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Mechanism of Enhanced Nifedipine Dissolution by Polymer-Blended Solid Dispersion through Molecular-Level Characterization

机译:通过分子水平表征通过聚合物共混固体分散体提高硝基普宁溶解的机理

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We investigated the effect of polymer composition on nifedipine (NIF) dissolution through molecular-level characterization of NIF/hypromellose (HPMC)/Eudragit S (EUD-S) ternary solid dispersions. The dissolution rates and molecular states of NIF and polymers were evaluated in NIF/HPMC/EUD-S spray-dried samples (SPDs) with different polymer compositions. Blending of HPMC and EUD-S improved the dissolution property of each polymer. Moreover, polymer blending enhanced NIF dissolution from the NIF/polymer SPD with EUD-S/polymer wt % of 50-75%. NIF dissolved simultaneously with polymers from the NIF/polymer SPDs with high EUD-S/polymer wt %. In contrast, NIF and polymers separately dissolved from the NIF/polymer SPDs with EUD-S/polymer wt % of 10-25%, exhibiting a significantly reduced NIF dissolution rate. Fourier transform-infrared and solid-state NMR measurements revealed that HPMC and EUD-S formed molecular interactions with NIF via different interaction modes. Comprehensive analysis by spectroscopic measurements and modulated differential scanning calorimetry showed that the molecular interaction between NIF and EUD-S was stronger than that between NIF and HPMC. Furthermore, the C-13-spin lattice relaxation time measurements revealed that EUD-S effectively restricted the molecular mobility of NIF compared with HPMC. The molecular interaction between NIF and EUD-S led to the simultaneous and fast dissolution of NIF with EUD-S from the NIF/polymer SPD with high EUD-S loading. Thus, enhanced NIF dissolution was ascribed to the fast dissolution properties of the blended polymer and to polymer-controlled NIF dissolution through the strong molecular interaction between NIF and EUD-S. To achieve efficient optimization of the formulation of polymer-blended solid dispersion with desired drug dissolution, it is necessary to consider both polymer polymer and drug polymer intermolecular interactions.
机译:我们研究了聚合物组合物对NiFemipine(NIF)溶解的影响,通过NIF /杂酰基(HPMC)/ EUDRAGIT S(EUD-S)三元固体分散体的分子水平表征。在NIF / HPMC / EUD-S喷雾干燥样品(SPD)中评价NIF和聚合物的溶出速率和分子状态,具有不同的聚合物组合物。 HPMC和EUD-S的混合改善了每种聚合物的溶出性。此外,聚合物混合增强的NIF溶解来自NIF /聚合物SPD的EUD-S /聚合物WT%50-75%。 NIF与来自NIF /聚合物SPD的聚合物同时溶解,具有高EUD-S /聚合物WT%。相反,NIF和聚合物与NIF /聚合物SPD分别溶解于EUD-S /聚合物WT%10-25%,表现出显着降低的NIF溶解速率。傅里叶变换红外和固态NMR测量显示HPMC和EUD-S通过不同的相互作用模式与NIF形成分子相互作用。通过光谱测量和调制差分扫描量热法综合分析表明,NIF和EUD-S之间的分子相互作用比NIF和HPMC之间的分子相互作用更强。此外,C-13-旋转晶格弛豫时间测量显示EUD-S与HPMC相比,EUD-S有效地限制了NIF的分子迁移率。 NIF和EUD-S之间的分子相互作用导致NIF与高eUD /聚合物SPD与EUD-S的同时和快速溶解,具有高EUD-S加载。因此,通过NIF和EUD-S之间的强分子相互作用,增强的NIF溶解归因于混合聚合物的快速溶解性能并通过NIF和EUD-S之间的强分子相互作用来溶解。为了实现具有所需药物溶解的高分子混合固体分散体的高效优化,需要考虑聚合物聚合物和药物聚合物分子间相互作用。

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