Zheng Ying, Haworth Ian S, Zuo Zhong, Chow Moses S S, Chow Albert H L
School of Pharmacy, The Chinese University of Hong Kong, Shatin, NT, Hong Kong.
J Pharm Sci. 2005 May;94(5):1079-89. doi: 10.1002/jps.20325.
Quercetin is a bioactive flavonoid widely used as a health supplement. Being sparingly soluble and chemically unstable in aqueous intestinal fluids, quercetin is poorly absorbed orally. This study aimed to investigate the effects of three beta-cyclodextrins, namely, unsubstituted beta-cyclodextrin (beta-CD), hydroxypropyl-beta-cyclodextrin (HP-beta-CD), and sulfobutyl ether beta-cyclodextrin (SBE-beta-CD) on the chemical stability and water solubility of quercetin, and to elucidate the complexation mechanisms of these beta-CDs with quercetin. Quercetin-beta-CD complexes in solution were characterized by stability assessment, phase solubility measurements, and 1H-nuclear magnetic resonance (NMR) spectroscopy. Molecular modeling was used to help establish the mode of interaction of the beta-CDs with quercetin. Solubility enhancements of quercetin obtained with the three beta-CDs followed the rank order: SBE-beta-CD > HP-beta-CD > beta-CD. The stability of quercetin at alkaline pHs also showed substantial improvement. NMR spectroscopic analysis suggested that the B-ring, C-ring, and part of the A-ring of quercetin display favorable interaction with the hydrophobic cavity of the beta-CDs, which was confirmed by molecular dynamics (MD) simulations using a solvated model of the quercetin-beta-CD complex. An inclusion complex model has been established for explaining the observed augmentation of solubility and stability of quercetin in water by beta-CDs.
槲皮素是一种生物活性黄酮类化合物,广泛用作健康补充剂。由于槲皮素在肠道水性流体中溶解度低且化学性质不稳定,其口服吸收较差。本研究旨在研究三种β-环糊精,即未取代的β-环糊精(β-CD)、羟丙基-β-环糊精(HP-β-CD)和磺丁基醚β-环糊精(SBE-β-CD)对槲皮素化学稳定性和水溶性的影响,并阐明这些β-环糊精与槲皮素的络合机制。通过稳定性评估、相溶解度测量和1H-核磁共振(NMR)光谱对溶液中的槲皮素-β-环糊精络合物进行表征。使用分子建模来帮助确定β-环糊精与槲皮素的相互作用模式。三种β-环糊精使槲皮素溶解度提高的顺序为:SBE-β-CD > HP-β-CD > β-CD。槲皮素在碱性pH值下的稳定性也有显著提高。NMR光谱分析表明,槲皮素的B环、C环和部分A环与β-环糊精的疏水腔表现出良好的相互作用,这通过使用槲皮素-β-环糊精络合物的溶剂化模型进行的分子动力学(MD)模拟得到证实。已经建立了一个包合物模型来解释观察到的β-环糊精使槲皮素在水中的溶解度和稳定性增加的现象。