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首页> 外文期刊>European journal of pharmaceutical sciences >Hot melt extrusion (HME) for amorphous solid dispersions: Predictive tools for processing and impact of drug-polymer interactions on supersaturation
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Hot melt extrusion (HME) for amorphous solid dispersions: Predictive tools for processing and impact of drug-polymer interactions on supersaturation

机译:用于无定形固体分散体的热熔挤出(HME):预测工具,用于处理和影响药物-聚合物相互作用对过饱和度的影响

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The processing parameters for HME have been evaluated and the impact of solid state intermolecular drug-polymer interactions on supersaturation has been investigated. Poorly water soluble drugs Indomethacin (IND), Itraconazole (ITZ), and Griseofulvin (GSF) and hydrophilic polymers - Eudragit EPO, Eudragit L-100-55, Eudragit L-100, HPMCAS-LF, HPMCAS-MF, Pharmacoat 603, and Kollidon VA-64 were selected for this study. Solubility parameters calculations (SPCs), differential scanning calorimetry (DSC), and rheological analysis of drug-polymer physical mixtures (PMs) was performed. The solid dispersions were manufactured using HME and characterized by powder X-ray diffraction (PXRD), polarized light microscopy (PLM), Fourier transform infra-red (FTIR) Spectroscopy, and dissolution study. Results obtained by DSC correlated well with SPC, showing single glass transition temperatures for all the PMs except ITZ in Eudragit EPO that depicted the highest difference in solubility parameters. The zero rate viscosity (g0) was dependent on the melting point and consequently the state of the drug in the polymer at the softening temperature. The g0 of PMs was useful to estimate the processing conditions for HME and to produce transparent glassy HMEs from most of the PMs. The amorphous conversion due to HME was confirmed by PXRD and PLM. The solid state drug-polymer interactions occurred during HME could be confirmed by FTIR analysis. Highest supersaturation could be achieved for IND, ITZ, and GSF using Eudragit EPO, HPMCAS-LF, and Eudragit L-100-55, respectively where relatively higher stretching of the carbonyl peaks was observed by FTIR. Thus, the highest dissolution rate and supersaturation of poorly water soluble drugs could be attributed to drug-polymer interactions occurred during HME. ? 2012 Elsevier B.V. All rights reserved.
机译:已评估了HME的加工参数,并研究了固态分子间药物-聚合物相互作用对过饱和的影响。水溶性差的药物吲哚美辛(IND),伊曲康唑(ITZ)和灰黄霉素(GSF)以及亲水性聚合物-Eudragit EPO,Eudragit L-100-55,Eudragit L-100,HPMCAS-LF,HPMCAS-MF,Pharmacoat 603和选择了Kollidon VA-64进行这项研究。进行了溶解度参数计算(SPC),差示扫描量热法(DSC)和药物-聚合物物理混合物的流变学分析(PM)。使用HME制备固体分散体,并通过粉末X射线衍射(PXRD),偏振光显微镜(PLM),傅立叶变换红外(FTIR)光谱和溶出度研究对其进行表征。 DSC获得的结果与SPC相关性很好,显示了Eudragit EPO中除ITZ以外的所有PM的单一玻璃化转变温度,这些温度描述了溶解度参数的最大差异。零速率粘度(g0)取决于熔点,因此取决于药物在软化温度下在聚合物中的状态。 PM的g0可用于估算HME的加工条件并从大多数PM中生产透明的玻璃状HME。通过PXRD和PLM确认了HME引起的无定形转化。 FTIR分析可以确认HME期间发生的固态药物-聚合物相互作用。使用Eudragit EPO,HPMCAS-LF和Eudragit L-100-55分别可以使IND,ITZ和GSF达到最高的过饱和度,其中FTIR观察到羰基峰的拉伸相对较高。因此,水溶性差的药物的最高溶解速率和过饱和度可归因于HME期间发生的药物-聚合物相互作用。 ? 2012 Elsevier B.V.保留所有权利。

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