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首页> 外文期刊>Molecular pharmaceutics >Role of Molecular Interactions for Synergistic Precipitation Inhibition of Poorly Soluble Drug in Supersaturated Drug-Polymer-Polymer Ternary Solution
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Role of Molecular Interactions for Synergistic Precipitation Inhibition of Poorly Soluble Drug in Supersaturated Drug-Polymer-Polymer Ternary Solution

机译:分子相互作用对难溶药物在过饱和药物-聚合物-聚合物三元溶液中的协同沉淀抑制作用

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摘要

We are reporting a synergistic effect of combined Eudragit E100 and PVP K90 in precipitation inhibition of indomethacin (IND) in solutions at low polymer concentration, a phenomenon that has significant implications on the usefulness of developing novel ternary solid dispersion of poorly soluble drugs. The IND supersaturation was created by cosolvent technique, and the precipitation studies were performed in the absence and the presence of individual and combined PVP K90 and Eudragit E100. The studies were also done with PEG 8000 as a noninteracting control polymer. A continuous UV recording of the IND absorption was used to observe changes in the drug concentration over time. The polymorphic form and morphology of precipitated IND were characterized by Raman spectroscopy and scanning electron microscopy. The change in the chemical shift in solution H-1 NMR was used as novel approach to probe IND polymer interactions. Molecular modeling was used for calculating binding energy between IND polymer as another indication of IND polymer interaction. Spontaneous IND precipitation was observed in the absence of polymers. Eudragit E100 showed significant inhibitory effect on nuclei formation due to stronger interaction as reflected in higher binding energy and greater change in chemical shift by NMR PVP K90 led to significant crystal growth inhibition due to adsorption on growing IND crystals as confirmed by modified crystal habit of precipitate in the presence of PVP K90. Combination of polymers resulted in a synergistic precipitation inhibition and extended supersaturation. The NMR confirmed interaction between IND Eudragit E100 and IND PVP K90 in solution. The combination of polymers showed similar peak shift albeit using lower polymer concentration indicating stronger interactions. The results established the significant synergistic precipitation inhibition effect upon combining Eudragit E100 and PVP K90 due to drug polymer interaction.
机译:我们报道了Eudragit E100和PVP K90组合在低聚合物浓度溶液中抑制吲哚美辛(IND)沉淀的协同作用,这种现象对开发新型难溶性三元固体分散体的有效性具有重要意义。 IND过饱和是通过助溶剂技术产生的,沉淀研究是在不存在和存在单个PVP K90和Eudragit E100组合的情况下进行的。还使用PEG 8000作为非相互作用的对照聚合物进行了研究。使用IND吸收的连续UV记录来观察药物浓度随时间的变化。用拉曼光谱和扫描电子显微镜表征沉淀的IND的多晶型和形态。溶液H-1 NMR中化学位移的变化被用作探测IND聚合物相互作用的新方法。分子模型被用于计算IND聚合物之间的结合能,作为IND聚合物相互作用的另一个指示。在没有聚合物的情况下观察到自发的IND沉淀。 Eudragit E100对核的形成具有显着的抑制作用,这是由于相互作用增强所致,如较高的结合能所反映,并且NMR PVP K90的化学位移变化较大,这归因于对生长的IND晶体的吸附而导致的显着晶体生长抑制,这一点已由沉淀的改良晶体习性所证实在PVP K90的情况下。聚合物的组合导致协同的沉淀抑制作用和延长的过饱和度。 NMR证实溶液中IND Eudragit E100和IND PVP K90之间有相互作用。聚合物的组合显示出相似的峰移动,尽管使用较低的聚合物浓度表明较强的相互作用。结果表明,由于药物聚合物的相互作用,Eudragit E100和PVP K90结合后具有明显的协同沉淀抑制作用。

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