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首页> 外文期刊>Crystal growth & design >Ultrasonic Irradiation and Seeding To Prevent Metastable Liquid–Liquid Phase Separation and Intensify Crystallization
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Ultrasonic Irradiation and Seeding To Prevent Metastable Liquid–Liquid Phase Separation and Intensify Crystallization

机译:超声辐射和播种以防止亚稳液 - 液相分离并强化结晶

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摘要

During the crystallization of complex pharmaceutical molecules, a liquid–liquid phase (LLP) separation phenomenon may occur that could hinder crystallization processes and adversely affect the crystal quality and process robustness. In this study, the LLP separation behavior of a vanillin and water mixture was investigated using a hot-stage microscope and a cooling crystallization process. Thermodynamic stability of phases and the crystallization phase diagram including the metastable zone width, nucleation, and LLP separation were developed. The impact of ultrasound and seeding on LLP separation was investigated and used to optimize the crystallization process. Our results show that the LLP separation may exist in both the stable and metastable zones of the crystallization phase diagram. Ultrasound can effectively promote nucleation, narrow the metastable zone of LLP separation, and inhibit LLP separation within the concentration range of 3.8–4.8 g/100 g water. Moreover, ultrasonic crystallization was optimized to produce small, uniformly sized crystals in a reproducible manner, whereas seeding crystallization was able to grow larger crystals without obvious agglomeration. In the case of a vanillin aqueous solution, both the ultrasonic induced and seeding crystallization strategies were able to prevent LLP separation and improve process performance. These results would be of significant use in the crystallization of other pharmaceutical molecules in which LLP separation occurs.
机译:在复杂药物分子的结晶期间,可能发生液 - 液相(LLP)分离现象,其可能阻碍结晶过程并对晶体质量和工艺鲁棒性产生不利影响。在该研究中,使用热级显微镜和冷却结晶法研究了香草蛋白和水混合物的LLP分离行为。开发了热力学稳定性和包括亚稳地区宽度,成核和LLP分离的结晶相图。研究了超声和播种对LLP分离的影响,并用于优化结晶过程。我们的研究结果表明,结晶相图的稳定和亚稳地区的LLP分离可能存在。超声波可有效促进成核,缩小LLP分离的亚稳地区,并抑制浓度范围内的LLP分离3.8-4.8g / 100g水。此外,优化超声结晶以可再现的方式生产小,均匀尺寸的晶体,而播种结晶能够生长较大的晶体而无明显附聚。在香草蛋白水溶液的情况下,超声诱导和播种结晶策略都能够防止LLP分离并改善工艺性能。这些结果对于其他药物分子的结晶是显着的用途,其中发生LLP分离。

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  • 来源
    《Crystal growth & design 》 |2018年第4期| 共8页
  • 作者单位

    School of Chemical Engineering and Technology State Key Laboratory of Chemical Engineering Tianjin University Tianjin 300072 P. R. China;

    Department of Chemical and Biochemical Engineering The University of Western Ontario London Ontario N6A 5B9 Canada;

    School of Chemical Engineering and Technology State Key Laboratory of Chemical Engineering Tianjin University Tianjin 300072 P. R. China;

    School of Chemical Engineering and Technology State Key Laboratory of Chemical Engineering Tianjin University Tianjin 300072 P. R. China;

    School of Chemical Engineering and Technology State Key Laboratory of Chemical Engineering Tianjin University Tianjin 300072 P. R. China;

    Department of Chemical and Biochemical Engineering The University of Western Ontario London Ontario N6A 5B9 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学 ;
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