[1] Miles SL, McFarland M, Niles RM. Molecular and physiological actions of quercetin:need for clinical trials to assess its benefits in human disease[J]. Nutr Rev, 2014, 72(11):720-734.
[2] Rani N, Velan LPT, Vijaykumar S, et al. An insight into the potentially old-wonder molecule-quercetin:the perspectives in foresee[J]. Chin J Integr Med, 2015, 1:1-16.
[3] Nabavi SF, Russo GL, Daglia M. Role of quercetin as an alternative for obesity treatment:you are what you eat![J]. Food Chem, 2015, 179:305-310.
[4] Gormaz JG, Quintremil S, Rodrigo R. Cardiovascular disease:A target for the pharmacological effects of quercetin[J]. Curr Top Med Chem, 2015, 15(17):1735-1742.
[5] Xiao ZP, Wang XD, Peng ZY, et al. Molecular docking, kinetics study, and structure-activity relationship analysis of quercetin and its analogous as Helicobacter pylori urease inhibitors[J]. J Agric Food Chem, 2012, 60(42):10572-10577.
[6] 夏玉明, 朴惠善, 许妍姬, 等. 槲皮素过渡金属锌配合物的合成[J]. 延边大学学报(自然科学版), 1999, 25(1):37-39.
[7] de Souza RF, De Giovani WF. Synthesis, spectral and electrochemical properties of Al(Ⅲ) and Zn(Ⅱ) complexes with flavonoids[J]. Spectrochim Acta A Mol Biomol Spectrosc, 2005, 61(9):1985-1990.
[8] Tan J, Wang B, Zhu L. DNA binding, cytotoxicity, apoptotic inducing activity, and molecular modeling study of quercetin zinc(Ⅱ) complex[J]. Bioorg Med Chem, 2009, 17(2):614-620.
[9] Primikyri A, Mazzone G, Lekka C, et al. Understanding zinc(Ⅱ) chelation with quercetin and luteolin:a combined NMR and theoretical study[J]. J Phys Chem B, 2015, 119(1):83-95.
[10] 曾旭, 叶丹荣, 林德昌, 等. 含铋配合物与奈瑟氏菌铁结合蛋白的反应性质研究[J]. 无机化学学报, 2011, 27(11):2179-2184.
[11] 王海燕, 曾秀, 张成平, 等. 槲皮素金属螯合物的研究与应用[J]. 食品科学, 2013, 34(13):361-364.
[12] de Souza RF, De Giovani WF. Antioxidant properties of complexes of flavonoids with metal ions[J]. Redox Rep, 2004, 9(2):97-104.