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Novel pharmaceutical cocrystals of triflusal: crystal engineering and physicochemical characterization

机译:三氟甲磺酸的新型药物共晶体:晶体工程和理化特性

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摘要

A platelet aggregation inhibitor, triflusal, is practically insoluble in water and rapidly converts to 2-hydroxy-4-trifluoromethylbenzoic acid (HTB) in physiological systems. Six cocrystals of triflusal were discovered from a cocrystal screening with pharmaceutically acceptable coformers, namely, benzamide, isonicotinamide, picolinamide, propionamide, urea, and valpromide, in an attempt to find stable solid forms of triflusal. The choice of coformers was based on a crystal engineering strategy relying on the carboxylic acid group of the triflusal and the most prevalent supramolecular interactions that it can form with complementary functional groups. Crystal structure analysis revealed that all the cocrystals feature heterosynthons involving carboxylic acid group of triflusal and pyridine/amide group of the coformers. Except the cocrystals with propionamide and valpromide, all the cocrystals were found to be stable at accelerated storage condition (40 degrees C, 75% relative humidity). Under slurry conditions, cocrystals with benzamide, picolinamide, and valpromide were found stable, but the remaining cocrystals undergo dissociation and degration of triflusal to HTB. As triflusal is known to undergo degradation in the presence of pharmaceutical excipients, the stable triflusal cocrystals reported herein may serve as promising candidates for development of novel triflusal drug formulations.
机译:血小板聚集抑制剂三氟尿嘧啶实际上不溶于水,在生理系统中会迅速转化为2-羟基-4-三氟甲基苯甲酸(HTB)。通过与药学上可接受的共形成物,即苯甲酰胺,异烟酰胺,吡啶甲酰胺,丙酰胺,尿素和丙戊酰胺的共晶筛选,发现了六氟尿嘧啶的六个共晶体,以试图找到稳定的三氟尿嘧啶固体形式。共晶基的选择基于晶体工程策略,该策略依赖于三氟尿嘧啶的羧酸基团以及可以与互补官能团形成的最普遍的超分子相互作用。晶体结构分析表明,所有共晶体均具有杂合子,涉及三氟甲磺酸的羧酸基和共形成者的吡啶/酰胺基。除了与丙酰胺和丙戊酰胺的共晶体外,所有共晶体在加速储存条件下(40摄氏度,75%相对湿度)都稳定。在浆液条件下,发现与苯甲酰胺,吡啶甲酰胺和丙戊酰胺共晶体稳定,但其余共晶体解离并分解成三氟甲磺酸至HTB。由于已知在药物赋形剂的存在下三氟乙醛会发生降解,因此本文报道的稳定的三氟乙醛共晶体可以用作开发新型三氟乙醛药物制剂的有前途的候选者。

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