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Towards controlling the crystallisation behaviour of fenofibrate melt: triggers of crystallisation and polymorphic transformation

机译:用于控制非辛纤维熔体的结晶行为:结晶和多态性转化的触发

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摘要

Fenofibrate (FEN) is a dyslipidemia treatment agent which is poorly soluble in water. FEN has tendency to form polymorphs and its crystallisation behaviour is difficult to predict. The nucleation process can be initiated by mechanical disruption such as ball milling or surface scratching which may result in different crystallisation behaviour to that observed in the unperturbed system. This study has obtained insights into the controllability of FEN crystallisation by means of regulating the exposed surface and growth temperatures during its crystallisation. The availability of an open top surface (OTS) during the crystallisation of the FEN melt resulted in a mixture containing FEN form I and IIa (I IIa) at room temperature, and in the range 40 to 70 degrees C. Covering the surface led to significant increases in the yield of form IIa at room temperature and at 40 and 50 degrees C. These temperatures also yielded the highest amount of form IIa in the OTS samples whilst crystallisation at 70 degrees C led to only FEN form I crystals regardless of the availability of the free surface. The metastable FEN form IIa transforms to the stable form I under the influence of a mechanical stress. Additionally, the introduction of OTS before the completion of crystallisation of form IIa led to a switch' of from IIa growth to form I. This study demonstrates that the polymorph selection of FEN can be obtained by the manipulation of the crystallisation conditions.
机译:Fenofibrate(Fen)是一种血脂血症处理剂,其可溶于水差。 Fen具有形成多晶型物的倾向,并且其结晶行为难以预测。成核过程可以通过机械破坏引发,例如球磨或表面划痕,这可能导致在未受干扰的系统中观察到的不同结晶行为。该研究通过调节在其结晶过程中通过调节暴露的表面和生长温度来获得芬汁结晶的可控性的洞察力。在芬料熔体结晶期间的开口顶表面(OTS)的可用性导致在室温下含有FEN形式I和IIA(I IIa)的混合物,在40至70℃的范围内覆盖表面在室温下,在室温下和40℃下,在40和50℃下的含量屈服的显着增加。这些温度也在OTS样品中产生最高量的IIa,而70℃的结晶,但只有无论如何,均匀的牙齿形成I晶体自由表面的可用性。在机械应力的影响下,亚稳芬含量的IIa转化为稳定的形式I。另外,在完成IIa的结晶之前引入OTS,从IIa的转换为IIA的切换,以形成I.本研究表明,通过操纵结晶条件,可以获得FEN的多晶型物选择。

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  • 来源
    《RSC Advances》 |2018年第24期|共13页
  • 作者单位

    Univ East Anglia Sch Pharm Norwich NR4 7TJ Norfolk England;

    Univ East Anglia Sch Pharm Norwich NR4 7TJ Norfolk England;

    Univ East Anglia Sch Pharm Norwich NR4 7TJ Norfolk England;

    Univ East Anglia Sch Chem Norwich NR4 7TJ Norfolk England;

    Univ East Anglia Sch Pharm Norwich NR4 7TJ Norfolk England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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