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Molecular Crystal Forms of Antitubercular Ethionamide with Dicarboxylic Acids: Solid-State Properties and a Combined Structural and Spectroscopic Study

机译:用二羧酸的抗细胞乙醇的分子晶体形式:固态性质和组合结构和光谱研究

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摘要

We report on the preparation, characterization, and bioavailability properties of three new crystal forms of ethionamide, an antitubercular agent used in the treatment of drug-resistant tuberculosis. The new adducts were obtained by combining the active pharmaceutical ingredient with three dicarboxylic acids, namely glutaric, malonic and tartaric acid, in equimolar ratios. Crystal structures were obtained for all three adducts and were compared with two previously reported multicomponent systems of ethionamide with maleic and fumaric acid. The ethionamide-glutaric acid and the ethionamide-malonic acid adducts were thoroughly characterized by means of solid-state NMR (13C and 15N Cross-Polarization Magic Angle Spinning or CPMAS) to confirm the position of the carboxylic proton, and they were found to be a cocrystal and a salt, respectively; they were compared with two previously reported multicomponent systems of ethionamide with maleic and fumaric acid. Ethionamide-tartaric acid was found to be a rare example of kryptoracemic cocrystal. In vitro bioavailability enhancements up to a factor 3 compared to pure ethionamide were assessed for all obtained adducts.
机译:我们报告了三种新晶体形式的乙酰胺,一种用于治疗耐药结核病的抗胆管剂的制备,表征和生物利用度特性。通过将活性药物成分与三种二羧酸,即戊二醛,丙酸酯和酒石酸组合,在等摩尔比中组合来获得新的加合物。为所有三个加合物获得了晶体结构,并将其与具有马来酸和富马酸的两个先前报道的乙酰胺的多组分体系进行比较。通过固态NMR(13C和15N交叉偏振魔角旋转或CPMA)通过固态NMR(13C和15N交叉偏振魔角旋转或CPMA)彻底表征乙醇酰胺 - 戊二酸加合物以确认羧基质子的位置,并且发现它们是分别是酸咖啡和盐;将它们与两种先前报道的乙酰胺与马来酸和富马酸进行了比较。发现乙醛氨基甲酸是氪气团的罕见实施例。对于所有获得的加合物,评估了与纯的乙醇相比,在体外生物利用度增强率高于纯的乙酰胺。

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