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利用主成分分析探索白藜芦醇苷的潜在共晶形成物。

Exploring potential coformers for oxyresveratrol using principal component analysis.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat-Yai 90112, Thailand.

Center of Excellence for Drug Delivery System and Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat-Yai 90112, Thailand.

出版信息

Int J Pharm. 2020 Sep 25;587:119630. doi: 10.1016/j.ijpharm.2020.119630. Epub 2020 Jul 8.

Abstract

Oxyresveratrol (OXY) exhibits poor bioavailability due to its low solubility. Cocrystals are effective in improving solubility of OXY. In this study, principal component analysis (PCA) was employed for coformer selection using 5 variables (solubility parameter, logP, hydrogen bonding acceptor, hydrogen bonding donor and molecular volume). According to PCA analyses, nicotinamide (NCT) and proline (PRO) were grouped as the potential coformers. OXY-PRO and OXY-NCT cocrystals were obtained using a liquid assisted grinding method. The thermal and diffraction characteristics of both cocrystals were different from their starting materials. Based on FTIR and Raman spectroscopy, both interactions between the amide group of NCT and the phenolic hydroxyl groups of OXY, as well as π-π interactions between the aromatic rings of OXY and the pyridine ring of NCT were involved in the cocrystal formation. For OXY-PRO cocrystal, the carboxylate group of PRO interacted with the hydroxyl groups of OXY, OXY-NCT and OXY-PRO cocrystals enhanced the solubility and dissolution of OXY. Accordingly, PCA proved to be an effective technique in screening potential coformers for OXY and probably for other compounds. The improved solubility and dissolution of OXY in the form of cocrystal may provide a benefit for the use of OXY for pharmaceutical applications.

摘要

氧代白藜芦醇(OXY)由于溶解度低,生物利用度差。共晶可以有效地提高 OXY 的溶解度。在这项研究中,使用 5 个变量(溶解度参数、logP、氢键受体、氢键供体和分子体积),采用主成分分析(PCA)进行共晶形成剂的选择。根据 PCA 分析,烟酰胺(NCT)和脯氨酸(PRO)被归为潜在的共晶形成剂。使用液辅助研磨法获得了 OXY-PRO 和 OXY-NCT 共晶。两种共晶的热和衍射特性都与其起始材料不同。基于傅里叶变换红外光谱(FTIR)和拉曼光谱,NCT 的酰胺基团与 OXY 的酚羟基之间的相互作用,以及 OXY 的芳环与 NCT 的吡啶环之间的π-π相互作用都参与了共晶的形成。对于 OXY-PRO 共晶,PRO 的羧基与 OXY 的羟基相互作用,OXY-NCT 和 OXY-PRO 共晶提高了 OXY 的溶解度和溶解速度。因此,PCA 被证明是筛选 OXY 潜在共晶形成剂的有效技术,可能对其他化合物也有效。以共晶形式存在的 OXY 溶解度和溶解速度的提高,可能为 OXY 在药物应用中的使用带来益处。

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