首页> 外文期刊>Journal of Chemical Engineering of Japan >Dependence of Polymorphic Transformation on Anti-Solvent Composition and Crystallization Behavior of Thiazole-Derivative Pharmaceutical
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Dependence of Polymorphic Transformation on Anti-Solvent Composition and Crystallization Behavior of Thiazole-Derivative Pharmaceutical

机译:多晶型转化对噻唑衍生物药物抗溶剂组成和结晶行为的依赖性

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References(11) Cited-By(5) The transformation and crystallization behaviors of the polymorphs (A and C) and solvated crystals (BH (BPT·0.5H2O) and D (BPT·MeOH)) of the thiazole-derivative pharmaceutical (BPT) were investigated. The solubility of metastable form was measured with the vigorous stirring using a magnetic stirrer. It was found that at 323 K with the volume fraction of methanol (VMeOH) of 0.5, A and D forms dose not transform to the stable C form directly, but transform in two steps via the metastable BH form. The stability of A tended to decrease and the stability of D form increased with the decreased of temperature from 323 to 303 K. The A and D forms also transformed to the metastable BH form at 303 K and 313 K. This is because of the selective nucleation and growth of BH crystals due to the specific solute-solvent interaction in comparison with C crystals. The small free energy difference between BH and C forms also stabilizes BH form.It appeared that the C form is the stable form and A is the metastable form with the methanol composition (VMeOH) ranges of 0.5–0.8 at 323 K. At the methanol composition of 0.7 A, BH and D forms transformed to the stable form, C. With increase of methanol composition the stability of D form is increased and that of BH form decreased. Such tendency may be due to the dissociation of the solvated crystals.In the crystallization at 323 K by adding water as an anti-solvent to BPT solution of methanol and water mixture, it cleared that only the metastable forms of BH and D crystallize and the crystallization ratio of these polymorphs depends on the addition rate of water. Further more, it was found that BH transforms to A by solution-mediated mechanism after the crystallization.
机译:参考文献(11)(5)噻唑衍生物药物(BPT)的多晶型物(A和C)和溶剂化晶体(BH(BPT·0.5H2O)和D(BPT·MeOH))的转变和结晶行为)进行了调查。使用磁力搅拌器在剧烈搅拌下测量亚稳形式的溶解度。发现在323 K且甲醇(VMeOH)的体积分数为0.5时,A和D形式并未直接转化为稳定的C形式,而是通过亚稳的BH形式分两步转化。随着温度从323 K降低到303 K,A的稳定性趋于降低,D形式的稳定性增加。在303 K和313 K时,A和D形式也转变为亚稳BH形式。这是由于选择性与C晶体相比,由于特定的溶质-溶剂相互作用,BH晶体的形核和生长。 BH和C形式之间较小的自由能差也使BH形式稳定。似乎在323 K下,C形式为稳定形式,A为亚稳形式,甲醇组成(VMeOH)介于0.5-0.8之间。 0.7 A,BH和D形式的化合物转变为稳定形式C。随着甲醇组成的增加,D形式的稳定性增加,而BH形式的稳定性降低。这种趋势可能是由于溶剂化晶体的解离所致。在323 K的结晶中,通过向甲醇和水的混合物的BPT溶液中加入水作为抗溶剂,可以清除只有亚稳形式的BH和D结晶,并且这些多晶型物的结晶率取决于水的添加速率。此外,发现结晶后BH通过溶液介导的机理转变成A。

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