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氧杂蒽酮-尿素复合物的制备、表征及抗氧化能力

Preparation, Characterization, and Antioxidant Capacity of Xanthone-Urea Complex.

作者信息

Ortega Catherine, Nomura Manami, Ohtomo Mizuki, Arce Florencio, See Gerard Lee, Inoue Yutaka

机构信息

Pharmaceutical Research and Drug Development Laboratories, Department of Pharmacy, School of Health Care Professions, University of San Carlos, Cebu 6000, Philippines.

Faculty of Pharmacy and Pharmaceutical Sciences, Josai University, 1-1 Keyakidai, Sakado 3500295, Saitama, Japan.

出版信息

Materials (Basel). 2025 Jun 5;18(11):2658. doi: 10.3390/ma18112658.

Abstract

Xanthones are a group of polyphenolic compounds widely known to have antitumor, anti-inflammatory, antibacterial, antifungal, antiviral, and antioxidant properties. To fully utilize their therapeutic potential, this study aimed to enhance the solubility of a poorly soluble xanthone by preparing a 1:1 molar ratio of xanthone-urea complex utilizing a cogrinding method via a vibration rod mill. DSC analysis revealed the disappearance of the characteristic endothermic peaks of xanthone (177 °C) and urea (136 °C) in the ground mixture (GM), along with the appearance of a new endothermic peak at 185 °C, indicating potential complexation. Additionally, new peaks were observed in the PXRD patterns of the GM at 9.1°, 12.0°, 14.0°, 18.6°, 19.6°, and 24.6°, suggesting structural changes that were also observed in SEM morphology. FTIR spectroscopy revealed significant shifts in the -NH and C=O peaks of xanthone and urea, as well as the disappearance of a -CN peak. Altered diffusion coefficients for both xanthone and urea were measured using DOSY-NMR, accompanied by notable improvements in solubility and dissolution profiles. The GM exhibited nearly a 2-fold increase in solubility, reaching 88.08 ± 1.25 µg/mL at 24 h and 90.97 ± 0.98 µg/mL at 72 h, alongside a 2-fold and 5-fold increase in dissolution at 0.21 µg/mL and 0.51 µg/mL for the physical mixture (PM) and GM, respectively. Furthermore, an enhanced antioxidant capacity was observed, as demonstrated in the calculated Trolox equivalent (TE) value, which increased from 1.48 ± 1.12 for xanthone alone to 1.65 ± 1.03 in the xanthone-urea complex. These findings confirm the successful complexation of xanthone and urea in a 1:1 molar ratio.

摘要

氧杂蒽酮是一类多酚化合物,众所周知具有抗肿瘤、抗炎、抗菌、抗真菌、抗病毒和抗氧化特性。为了充分发挥其治疗潜力,本研究旨在通过振动棒磨机采用共研磨法制备1:1摩尔比的氧杂蒽酮-尿素复合物,以提高难溶性氧杂蒽酮的溶解度。差示扫描量热法(DSC)分析表明,研磨混合物(GM)中氧杂蒽酮(177℃)和尿素(136℃)的特征吸热峰消失,同时在185℃出现一个新的吸热峰,表明可能形成了复合物。此外,在GM的粉末X射线衍射(PXRD)图谱中,在9.1°、12.0°、14.0°、18.6°、19.6°和24.6°处观察到新峰,这表明在扫描电子显微镜(SEM)形态中也观察到了结构变化。傅里叶变换红外光谱(FTIR)显示氧杂蒽酮和尿素的-NH和C=O峰发生了显著位移,同时-CN峰消失。使用扩散排序核磁共振(DOSY-NMR)测量了氧杂蒽酮和尿素的扩散系数变化,其溶解度和溶出曲线有显著改善。GM的溶解度增加了近2倍,在24小时时达到88.08±1.25μg/mL,在72小时时达到90.97±0.98μg/mL,物理混合物(PM)在0.21μg/mL时的溶出度增加了2倍,GM在0.51μg/mL时的溶出度增加了5倍。此外,观察到抗氧化能力增强,如计算得出的特罗克斯当量(TE)值所示,从单独氧杂蒽酮的1.48±1.12增加到氧杂蒽酮-尿素复合物中的1.65±1.03。这些发现证实了氧杂蒽酮和尿素以1:1摩尔比成功形成了复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bfb/12155786/e4d8f721bae3/materials-18-02658-g001.jpg

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