Innovative aminoglutethimide co-crystals: synthesis, characterization, and insights into molecular interactions†

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
CrystEngComm Pub Date : 2025-01-24 DOI:10.1039/D4CE01171F
Ying Qi, Yang Liu, Xia Li, Juan Xu and Qi Zhang
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Abstract

Aminoglutethimide (AG), a Biopharmaceutical Classification System II (BCSII) drug, is approved for treating certain patients with Cushing's syndrome and breast cancer. However, it is technically limited to clinical application due to poor aqueous solubility. The water solubility of AG can be enhanced through the utilization of the co-crystal method. To screen AG co-crystals, this work employed liquid-assisted grinding and slow solvent evaporation methods. Three novel co-crystals of AG were successfully synthesized based on NH2–COOH supramolecular synthon theory. All co-crystals exhibited higher apparent solubility than pure AG in the dissolution experiments. The intermolecular interactions of the co-crystals were examined using single crystal X-ray diffraction along with other analytical methods to determine their crystal structures. The formation of co-crystals was dominated by N–H⋯O hydrogen bonds in molecular electrostatic potential (MEP) analysis. To further explore and visualize the intermolecular interactions that form co-crystals, Hirshfeld surface (HS) analyses and independent gradient model based on Hirshfeld partition (IGMH) analysis were applied. It was found that the van der Waals (vdW) force is another main driving force, working in conjunction with hydrogen bonds to form basic units of AG co-crystals. In addition, toxicity tests on liver and kidney organoids showed that three new co-crystals did not cause more serious toxicity than pure AG. Overall, this work has provided the structural analysis of three newly formed AG co-crystals, offering an insight into intermolecular interactions of co-crystals at the molecular level.

Abstract Image

创新氨基酰硫胺共晶体:合成,表征,并洞察分子相互作用†
氨卢硫胺(AG)是一种生物制药分类系统II (BCSII)药物,被批准用于治疗某些库欣综合征和乳腺癌患者。然而,由于其水溶性较差,在技术上限制了临床应用。利用共晶法可以提高AG的水溶性。为了筛选AG共晶,本工作采用了液体辅助研磨和缓慢溶剂蒸发的方法。基于NH2-COOH超分子合成理论,成功合成了三种新型AG共晶。在溶解实验中,所有共晶均表现出比纯银更高的表观溶解度。用单晶x射线衍射和其他分析方法检测了共晶的分子间相互作用,以确定其晶体结构。在分子静电势(MEP)分析中,共晶的形成主要由N-H⋯O氢键主导。为了进一步探索和可视化形成共晶的分子间相互作用,应用了Hirshfeld表面(HS)分析和基于Hirshfeld划分(IGMH)分析的独立梯度模型。发现范德华力(vdW)是另一个主要驱动力,与氢键一起形成AG共晶的基本单元。此外,对肝脏和肾脏类器官的毒性测试表明,三种新共晶的毒性并不比纯AG更严重。总的来说,这项工作提供了三种新形成的AG共晶的结构分析,在分子水平上对共晶的分子间相互作用提供了深入的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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