Sakurai Hitomi, Suzuki Mitsuaki, Itakura Shoko, Todo Hiroaki, Arce Florencio, See Gerard Lee, Tanikawa Takashi, Inoue Yutaka
Faculty of Pharmacy and Pharmaceutical Sciences, Josai University, 1-1 Keyakidai, Sakado 3500295, Saitama, Japan.
Faculty of Science, Josai University, 1-1 Keyakidai, Sakado 3500295, Saitama, Japan.
Materials (Basel). 2022 Apr 12;15(8):2836. doi: 10.3390/ma15082836.
Ellagic acid (EA), a natural polyphenol found in berries, has high antioxidant capacity. This study aimed to improve EA solubility by complex formation with urea (UR) using solvent evaporation method and evaluate its solubility, antioxidant capacity, and physical properties. The solubility test (25 °C, 72 h) showed that the solubility of EVP (EA/UR = 1/1) was approximately two-fold higher than that of EA (7.13 µg/mL versus 3.99 µg/mL). Moreover, the IC values of EA and EVP (EA/UR = 1/1) (1.50 µg/mL and 1.30 µg/mL, respectively) showed higher antioxidant capacity of EVP than that of EA. DSC analysis revealed that the UR peak at 134 °C disappeared, and a new endothermic peak was observed at approximately 250 °C for EVP (EA/UR = 1/1). PXRD measurements showed that the characteristic peaks of EA at 2θ = 12.0° and 28.0° and of UR at 2θ = 22.0°, 24.3°, and 29.1° disappeared and that new peaks were identified at 2θ = 10.6°, 18.7°, and 26.8° for EVP (EA/UR = 1/1). According to 2D NOESY NMR spectroscopy, cross-peaks were observed between the -NH and -OH groups, suggesting intermolecular interactions between EA and UR. Therefore, complexation was confirmed in EA/UR = 1/1 prepared by solvent evaporation, suggesting that it contributed to the improvement in solubility and antioxidant capacity of EA.
鞣花酸(EA)是一种存在于浆果中的天然多酚,具有很高的抗氧化能力。本研究旨在通过溶剂蒸发法与尿素(UR)形成复合物来提高EA的溶解度,并评估其溶解度、抗氧化能力和物理性质。溶解度测试(25℃,72小时)表明,EVP(EA/UR = 1/1)的溶解度约为EA的两倍(分别为7.13μg/mL和3.99μg/mL)。此外,EA和EVP(EA/UR = 1/1)的IC值(分别为1.50μg/mL和1.30μg/mL)表明EVP的抗氧化能力高于EA。DSC分析显示,134℃处的UR峰消失,EVP(EA/UR = 1/1)在约250℃处出现一个新的吸热峰。PXRD测量表明,EA在2θ = 12.0°和28.0°处以及UR在2θ = 22.0°、24.3°和29.1°处的特征峰消失,EVP(EA/UR = 1/1)在2θ = 10.6°、18.7°和26.8°处出现新峰。根据二维NOESY NMR光谱,在-NH和-OH基团之间观察到交叉峰,表明EA和UR之间存在分子间相互作用。因此,通过溶剂蒸发制备的EA/UR = 1/1中证实了络合作用,表明其有助于提高EA的溶解度和抗氧化能力。