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Multidrug Cocrystal of Anticonvulsants: Influence of Strong Intermolecular Interactions on Physiochemical Properties

机译:抗惊厥药的多药共晶体:强分子间相互作用对理化性质的影响

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摘要

A drug−drug cocrystal of two anticonvulsants, lamotrigine and phenobarbital, is presented. In the crystal structure, molecules form heterodimers via N−H···O and N−H···N hydrogen bonding. The intrinsic dissolution rate (IDR) and solubility of the cocrystal were measured in phosphate buffer (pH 7.2) and simulated gastric fluid (without pepsin), and compared to pure APIs. Dissolution experiments found suppressed IDR of the cocrystal with rates in the order pure PB > pure LTG > cocrystal. The solubility measurements were consistent with the dissolution behavior. The presence of strong heterodimers in the cocrystal compared to weaker homodimers in the parent drugs is implicated for the reduced solubility and dissolution rate.
机译:介绍了两种抗惊厥药拉莫三嗪和苯巴比妥的药物共结晶。在晶体结构中,分子通过NH··O和NH···N氢键形成异二聚体。在磷酸盐缓冲液(pH 7.2)和模拟胃液(不含胃蛋白酶)中测量了共晶的固有溶解速率(IDR)和溶解度,并与纯API进行了比较。溶解实验发现,共结晶的IDR受到抑制,其速率依次为纯PB>纯LTG>共结晶。溶解度测量与溶解行为一致。与母体药物中较弱的同二聚体相比,共结晶中存在强的异二聚体与溶解度和溶出度降低有关。

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