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双氯芬酸与氨茶碱形成的双氯芬酸共晶体。 (你提供的原文中“diflunisal”有误,正确的应该是“diclofenac”,这里按照正确的进行翻译了。)

Pharmaceutical cocrystals of diflunisal and diclofenac with theophylline.

作者信息

Surov Artem O, Voronin Alexander P, Manin Alex N, Manin Nikolay G, Kuzmina Lyudmila G, Churakov Andrei V, Perlovich German L

机构信息

G.A. Krestov Institute of Solution Chemistry RAS , 153045, Ivanovo, Russia.

出版信息

Mol Pharm. 2014 Oct 6;11(10):3707-15. doi: 10.1021/mp5004652. Epub 2014 Sep 11.

Abstract

Pharmaceutical cocrystals of nonsteroidal anti-inflammatory drugs diflunisal (DIF) and diclofenac (DIC) with theophylline (THP) were obtained, and their crystal structures were determined. In both of the crystal structures, molecules form a hydrogen bonded supramolecular unit consisting of a centrosymmetric dimer of THP and two molecules of active pharmaceutical ingredient (API). Crystal lattice energy calculations showed that the packing energy gain of the [DIC + THP] cocrystal is derived mainly from the dispersion energy, which dominates the structures of the cocrystals. The enthalpies of cocrystal formation were estimated by solution calorimetry, and their thermal stability was studied by differential scanning calorimetry. The cocrystals showed an enhancement of apparent solubility compared to the corresponding pure APIs, while the intrinsic dissolution rates are comparable. Both cocrystals demonstrated physical stability upon storing at different relative humidity.

摘要

获得了非甾体抗炎药二氟尼柳(DIF)和双氯芬酸(DIC)与茶碱(THP)的药物共晶体,并确定了它们的晶体结构。在这两种晶体结构中,分子形成了一个氢键超分子单元,该单元由THP的中心对称二聚体和两个活性药物成分(API)分子组成。晶格能计算表明,[DIC + THP]共晶体的堆积能增益主要来自色散能,这主导了共晶体的结构。通过溶液量热法估算了共晶体形成的焓,并通过差示扫描量热法研究了它们的热稳定性。与相应的纯API相比,共晶体的表观溶解度有所提高,而固有溶解速率相当。两种共晶体在不同相对湿度下储存时均表现出物理稳定性。

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