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新型吡喹酮共晶体的机械化学合成:固态表征与溶解度

Mechanochemical Synthesis of New Praziquantel Cocrystals: Solid-State Characterization and Solubility.

作者信息

Mureşan-Pop Marieta, Simon Simion, Bodoki Ede, Simon Viorica, Turza Alexandru, Todea Milica, Vulpoi Adriana, Magyari Klara, Iacob Bogdan C, Bărăian Alexandra Iulia, Gołdyn Mateusz, Gomes Clara S B, Susana Margarida, Duarte M Teresa, André Vânia

机构信息

Nanostructured Materials and Bio-Nano Interfaces Department, Interdisciplinary Research Institute on Bio-Nano-Sciences, Babes-Bolyai University, 42, Treboniu Laurian, Cluj-Napoca 400271, Romania.

INSPIRE Research Platform, Babes-Bolyai University, 11, Arany Janos, Cluj-Napoca 400028, Romania.

出版信息

Cryst Growth Des. 2024 May 11;24(11):4668-4681. doi: 10.1021/acs.cgd.4c00296. eCollection 2024 Jun 5.

Abstract

New cocrystals of praziquantel with suberic, 3-hydroxybenzoic, benzene-1,2,4,5-tetracarboxylic, trimesic, and 5-hydroxyisophthalic acids were obtained through ball milling experiments. The optimal conditions for the milling process were chosen by changing the solvent volume and the mechanical action time. Supramolecular interactions in the new cocrystals are detailed based on single-crystal X-ray diffraction analysis, confirming the expected formation of hydrogen bonds between the praziquantel carbonyl group and the carboxyl (or hydroxyl) moieties of the coformers. Different structural characterization techniques were performed for all samples, but the praziquantel:suberic acid cocrystal includes a wider range of investigations such as thermal analysis, infrared and X-ray photoelectron spectroscopies, and SEM microscopy. The stability for up to five months was established by keeping it under extreme conditions of temperature and humidity. Solubility studies were carried out for all the new forms disclosed herein and compared with the promising cocrystals previously reported with salicylic, 4-aminosalicylic, vanillic, and oxalic acids. HPLC analyses revealed a higher solubility for most of the new cocrystal forms, as compared to pure praziquantel.

摘要

通过球磨实验获得了吡喹酮与辛二酸、3-羟基苯甲酸、苯-1,2,4,5-四羧酸、均苯三甲酸和5-羟基间苯二甲酸形成的新共晶体。通过改变溶剂量和机械作用时间来选择球磨过程的最佳条件。基于单晶X射线衍射分析详细研究了新共晶体中的超分子相互作用,证实了吡喹酮羰基与共形成物的羧基(或羟基)部分之间形成了预期的氢键。对所有样品进行了不同的结构表征技术研究,但吡喹酮:辛二酸共晶体的研究范围更广,包括热分析、红外和X射线光电子能谱以及扫描电子显微镜。通过在极端温度和湿度条件下保存,确定了其长达五个月的稳定性。对本文公开的所有新晶型进行了溶解度研究,并与先前报道的与水杨酸、4-氨基水杨酸、香草酸和草酸形成的有前景的共晶体进行了比较。高效液相色谱分析表明,与纯吡喹酮相比,大多数新共晶体形式具有更高的溶解度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0106/11157481/09a14c020b1f/cg4c00296_0011.jpg

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