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Crystal Morphology Engineering of Pharmaceutical Solids: Tabletting Performance Enhancement

机译:固体药物的晶体形态工程:压片性能增强

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摘要

Crystal morphology engineering of a macrolide antibiotic, erythromycin A dihydrate, was investigated as a tool for tailoring tabletting performance of pharmaceutical solids. Crystal habit modification was induced by using a common pharmaceutical excipient, hydroxypropyl cellulose, as an additive during crystallization from solution. Observed morphology of the crystals was compared with the predicted Bravais–Friedel–Donnay–Harker morphology. An analysis of the molecular arrangements along the three dominant crystal faces [(002), (011), and (101)] was carried out using molecular simulation and thus the nature of the host–additive interactions was deduced. The crystals with modified habit showed improved compaction properties as compared with those of unmodified crystals. Overall, the results of this study proved that crystal morphology engineering is a valuable tool for enhancing tabletting properties of active pharmaceutical ingredients and thus of utmost practical value.
机译:研究了大环内酯类抗生素红霉素A二水合物的晶体形态工程,作为调整药物固体片剂性能的工具。从溶液中结晶过程中,通过使用常见的药物赋形剂羟丙基纤维素作为添加剂,可以诱导晶习改变。将观察到的晶体形态与预测的Bravais–Friedel–Donnay–Harker形态进行比较。使用分子模拟对沿三个主晶面[(002),(011)和(101)]的分子排列进行了分析,从而推论了主体与添加剂相互作用的性质。与未改性的晶体相比,具有改性习惯的晶体显示出改善的压实性能。总体而言,这项研究的结果证明,晶体形态工程学是增强活性药物成分压片性能的宝贵工具,因此具有最大的实用价值。

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