首页> 外文期刊>International Journal of Pharmaceutics >Differences in crystallization rate of nitrendipine enantiomers in amorphous solid dispersions with HPMC and HPMCP.
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Differences in crystallization rate of nitrendipine enantiomers in amorphous solid dispersions with HPMC and HPMCP.

机译:HPMC和HPMCP在无定形固体分散体中尼群地平对映异构体结晶速率的差异。

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摘要

To clarify the contribution of drug-polymer interaction to the physical stability of amorphous solid dispersions, we studied the crystallization rates of nitrendipine (NTR) enantiomers with identical physicochemical properties in the presence of hydroxypropylmethylcellulose (HPMC), hydroxypropylmethylcellulose phthalate (HPMCP) and polyvinylpyrrolidone (PVP). The overall crystallization rate at 60 degrees C and the nucleation rate at 50-70 degrees C of (+)-NTR were lower than those of (-)-NTR in the presence of 10-20% HPMC or HPMCP. In contrast, similar crystallization profiles were observed for the NTR enantiomers in solid dispersions containing PVP. The similar glass transition temperatures for solid dispersions of (-)-NTR and (+)-NTR suggested that the molecular mobility of the amorphous matrix did not differ between the enantiomers. These results indicate that the interaction between the NTR enantiomers and HPMC or HPMCP is stereoselective, and that differences in the stereoselective interaction create differences in physical stability between (-)-NTR and (+)-NTR at 50-70 degrees C. However, no difference in physical stability between the enantiomers was obvious at 40 degrees C. Loss of the difference in physical stability between the NTR enantiomers suggests that the stereoselective interaction between NTR and the polymers may not contribute significantly to the physical stabilization of amorphous NTR at 40 degrees C.
机译:为了阐明药物-聚合物相互作用对无定形固体分散体物理稳定性的影响,我们研究了在羟丙基甲基纤维素(HPMC),羟丙基甲基纤维素邻苯二甲酸酯(HPMCP)和聚乙烯吡咯烷酮( PVP)。在存在10-20%HPMC或HPMCP的情况下,(+)-NTR在60摄氏度的总体结晶速率和50-70摄氏度的成核速率低于(-)-NTR。相反,在含有PVP的固体分散体中,NTR对映异构体观察到相似的结晶曲线。 (-)-NTR和(+)-NTR固体分散体的相似玻璃化转变温度表明,对映异构体之间无定形基质的分子迁移率没有差异。这些结果表明,NTR对映异构体与HPMC或HPMCP之间的相互作用是立体选择性的,并且立体选择性相互作用的差异在(-)-NTR和(+)-NTR之间在50-70摄氏度之间造成了物理稳定性上的差异。对映体之间的物理稳定性在40°C时没有明显的差异。NTR对映体之间的物理稳定性的差异的损失表明,NTR和聚合物之间的立体选择性相互作用可能对无定形NTR在40°C的物理稳定性没有显着贡献。 C。

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