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Enhancement of the Physical and Chemical Stability of Amorphous Drug-Polymer Mixtures via Cryogenic Comilling

机译:通过低温传播增强无定形药物 - 聚合物混合物的物理和化学稳定性

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摘要

Amorphous dispersions of the Biclotymol antiseptic are obtained in polyvinylpyrrolidone (PVP), for different drug loadings, by comilling at temperatures below the glass transition of both components. Characterization of the dispersions by scanning differential calorimetry and temperature-dependent broadband dielectric spectroscopy shows them to be homogeneous amorphous molecular mixtures. A single glass transition with pronounced enthalpy recovery peak is observed, indicative of the formation of a homogeneous glass state characterized by substantial aging. The polymer has a considerable antiplasticizing effect on the drug, increasing its glass transition temperature (T-g) to well above room temperature. The T-g of the mixture increases linearly with the macromolecular mass fraction. Three (macro)molecular relaxations are identified in the isothermal dielectric spectra of the mixtures. The slowest process corresponds to the cooperative (alpha relaxation) dynamics of the polymer chains and drug molecules simultaneously, and its relaxation time becomes longer the higher the polymer content. The fastest one is an intramolecular relaxation mode of Biclotymol and is virtually unaffected by the presence of the polymer. Finally, the intermediate relaxation, which is also observed in pure PVP, is assigned to the motion of the polymer side groups. Its activation barrier increases with increasing drug content, indicative of a direct interaction of the drug with the pyrrolidone moieties, likely via hydrogen bonding to the carbonyl oxygen. Contrary to pure PVP, the mixtures are not hygroscopic. Mechanical amorphization by cryomilling thus yields glassy molecular mixtures at arbitrary drug concentration, with enhanced physical stability against crystallization and enhanced chemical stability against hydrolysis reactions.
机译:通过在低于两种组分的玻璃化转变的温度下,在不同药物载体的聚乙烯吡咯烷酮(PVP)中获得双甘醇溶胶抗菌剂的无定形分散剂。通过扫描差分量热法和温度依赖性宽带介电光谱表征分散体的表征显示它们是均匀的无定形分子混合物。观察到具有明显焓回收峰的单个玻璃化转变,表明形成具有大量老化的均匀玻璃状态。聚合物对药物具有相当大的抗塑化作用,将其玻璃化转变温度(T-G)增加到高于室温。混合物的T-G与大分子质量分数线性增加。在混合物的等温介电光谱中鉴定了三种(宏)分子弛豫。最缓慢的过程对应于同时聚合物链和药物分子的协同(α松弛)动态,并且其弛豫时间变得越长,聚合物含量越高。最快的是双标蛋白的分子内弛豫模式,并且实际上不受聚合物存在的影响。最后,在纯PVP中观察到的中间弛豫被分配给聚合物侧基的运动。其活化屏障随着药物含量的增加而增加,指示药物与吡咯烷酮部分的直接相互作用,可能通过氢键与羰基氧。与纯PVP相反,混合物不是吸湿的。通过如此低温研磨机械无定形化产生在任意药物浓度玻璃状分子的混合物,具有对抗结晶增强的物理稳定性和对水解的反应增强的化学稳定性。

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  • 来源
    《Macromolecules》 |2018年第22期|共11页
  • 作者单位

    Univ Politecn Cataluna Dept Fis Grp Caracteritzacio Mat EEBE Campus Diagonal Besos Ave Eduard Maristany 10-14 E-08019 Barcelona Spain;

    Univ Politecn Cataluna Dept Fis Grp Caracteritzacio Mat EEBE Campus Diagonal Besos Ave Eduard Maristany 10-14 E-08019 Barcelona Spain;

    Univ Rouen Normandie Lab Sci &

    Methodes Separat SMS EA3233 F-76821 Mont St Aignan France;

    Normandie Univ UNIROUEN Grp Phys Mat CNRS INSA Rouen F-76000 Rouen France;

    Univ Rouen Normandie Lab Sci &

    Methodes Separat SMS EA3233 F-76821 Mont St Aignan France;

    Univ Rouen Normandie Lab Sci &

    Methodes Separat SMS EA3233 F-76821 Mont St Aignan France;

    Univ Politecn Cataluna Dept Fis Grp Caracteritzacio Mat EEBE Campus Diagonal Besos Ave Eduard Maristany 10-14 E-08019 Barcelona Spain;

    Univ Politecn Cataluna Dept Fis Grp Caracteritzacio Mat EEBE Campus Diagonal Besos Ave Eduard Maristany 10-14 E-08019 Barcelona Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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