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Image-Based Investigation: Biorelevant Solubility of alpha and gamma Indomethacin

机译:基于图像的调查:α和γ吲哚美辛的Biorelevant溶解度

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摘要

Solubility is a physicochemical property highly dependent on the solid-state form of a compound. Thus, alteration of a compound's solid-state form can be undertaken to enhance the solubility of poorly soluble drug compounds. In the Biopharmaceutics Classification System (BCS), drugs are classified on the basis of their aqueous solubility and permeability. However, aqueous solubility does not always correlate best with in vivo solubility and consequently bioavailability. Therefore, the use of biorelevant media is a more suitable approach for mimicking in vivo conditions. Here, assessed with a novel image-based single-particle analysis (SPA) method, we report a constant ratio of solubility increase of 3.3 +/- 0.5 between the alpha and gamma solidstate forms of indomethacin in biorelevant media. The ratio was independent of pH, ionic strength, and surfactant concentration, which all change as the drug passes through the gastrointestinal tract. On the basis of the solubility ratio, a free energy difference between the two polymorphic forms of 2.9 kJ/mol was estimated. Lastly, the use of the SPA approach to assess solubility has proven to be simple, fast, and both solvent- and sample-sparing, making it an attractive tool for drug development.
机译:溶解度是高度依赖于化合物的固态形式的物理化学性质。因此,可以进行化合物的固态形式的改变以增强可溶性药物化合物的溶解度。在Biopharmaceutics分类系统(BCS)中,药物是根据其溶解度和渗透性的基础进行分类。然而,在体内溶解度和生物利用度方面并不总是最佳的水溶性。因此,使用Biorelevant介质是一种更合适的方法,用于模拟体内病症。这里,通过新颖的基于图像的单颗粒分析(SPA)方法评估,我们在Biorelevant介质中报告了α和γ固体甾脂蛋白的吲哚美酸的吲哚汀形式之间的3.3 +/- 0.5的溶解度增加的恒定比率。该比例与pH,离子强度和表面活性剂浓度无关,随着药物通过胃肠道的所有变化。在溶解度的基础上,估计两种多态性形式的两种多态性形式的自由能量差。最后,使用SPA方法评估溶解度已经证明是简单的,快速的,溶剂和样品备件,使其成为药物开发的有吸引力的工具。

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  • 来源
    《Analytical chemistry》 |2019年第6期|共7页
  • 作者单位

    Univ Helsinki Div Pharmaceut Chem &

    Technol Viikinkaari 5E Helsinki 00790 Finland;

    Univ Helsinki Div Pharmaceut Chem &

    Technol Viikinkaari 5E Helsinki 00790 Finland;

    Univ Ljubljana Fac Pharm Askerceva 7 Ljubljana 1000 Slovenia;

    Univ Helsinki Div Pharmaceut Chem &

    Technol Viikinkaari 5E Helsinki 00790 Finland;

    Univ Helsinki Div Pharmaceut Chem &

    Technol Viikinkaari 5E Helsinki 00790 Finland;

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

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