The oxidative decomposition of natural bioactive compound rhamnetin

被引:15
作者
Ramesova, Sarka [1 ]
Degano, Ilaria [2 ]
Sokolova, Romana [1 ]
机构
[1] ASCR, j Heyrovsky Inst Phys Chem, Vvi, Dolejskova 3, CZ-18223 Prague, Czech Republic
[2] Univ Pisa, Dept Chem & Ind Chem, Via Moruzzi 13, IT-56126 Pisa, Italy
关键词
Oxidation; Flavonoids; Cyclic voltammetry; Rhamnetin; Oxidative degradation; GLASSY-CARBON ELECTRODE; ELECTROCHEMICAL OXIDATION; ANTIOXIDANT ACTIVITY; EXTRACTION METHODS; FLAVONOIDS; QUERCETIN; MECHANISM; DYES; CONSTRUCTION; STABILITY;
D O I
10.1016/j.jelechem.2017.01.054
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The oxidation of the natural bioflavonoid rhamnetin was studied by a multi-analytical approach. It was widely used as a dye for colouring tapestries, and it is known for degrading in the presence of atmospheric oxygen and light. The oxidation mechanism was studied by cyclic voltammetry and UV-Vis spectroelectrochemical methods in aqueous solution on glassy carbon and platinum electrodes. Two-electron and two-proton oxidation proceeds in acidic solution, while two-electron and one-proton oxidation was found for a dissociated molecule of rhamnetin, and one electron oxidative process was obtained for the dianion present in alkaline solution. The complicated oxidation mechanism involves not only electron transfer, but also several coupled chemical reactions. The products were identified by HPLC-DAD and HPLC-ESI-MS/MS techniques. The distribution of oxidation products was strongly dependent on the duration of exposure to atmospheric oxygen. The main oxidation product was identified as 2-[(3,4-dihydroxyphenyl)carbony1]-2,4-dihydroxy-6-inethoxy-1-benzofuran-3(2H)-one. Because rhamnetin in solution was fully degraded by oxygen in 6 min, it was necessary to prepare its solutions under argon atmosphere prior any electrochemical measurement. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:125 / 130
页数:6
相关论文
共 38 条
[1]   THE CONSTRUCTION AND USE OF POTENTIAL-PH DIAGRAMS IN ORGANIC OXIDATION-REDUCTION REACTIONS [J].
BAILEY, SI ;
RITCHIE, IM ;
HEWGILL, FR .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2, 1983, (05) :645-652
[2]   Influence of extraction methods on stability of flavonoids [J].
Biesaga, Magdalena .
JOURNAL OF CHROMATOGRAPHY A, 2011, 1218 (18) :2505-2512
[3]   Analytical Methods for the Characterization of Organic Dyes in Artworks and in Historical Textiles [J].
Degano, I. ;
Ribechini, E. ;
Modugno, F. ;
Colombini, M. P. .
APPLIED SPECTROSCOPY REVIEWS, 2009, 44 (05) :363-410
[4]   Flavonoids: Old and new aspects of a class of natural therapeutic drugs [J].
Di Carlo, G ;
Mascolo, N ;
Izzo, AA ;
Capasso, F .
LIFE SCIENCES, 1999, 65 (04) :337-353
[5]  
Ferreira ESB., 2003, DYES HIST ARCHAEOL, V19, P19
[6]   Preparation and electrochemical study of fisetin modified glassy carbon electrode. Application to the determination of NADH and ascorbic acid [J].
Golabi, SM ;
Irannejad, L .
ELECTROANALYSIS, 2005, 17 (11) :985-996
[7]   Voltammetric and spectral characterization of two flavonols for assay-dependent antioxidant capacity [J].
He, Jian-Bo ;
Yuan, Sheng-Jie ;
Du, Jia-Qj ;
Hu, Xin-Ran ;
Wang, Yan .
BIOELECTROCHEMISTRY, 2009, 75 (02) :110-116
[8]  
Heyrovsky J., 1965, Principles of Polarography
[9]  
Hollman PCH, 2000, J SCI FOOD AGR, V80, P1081, DOI 10.1002/(SICI)1097-0010(20000515)80:7<1081::AID-JSFA566>3.0.CO
[10]  
2-G