Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6401282 | LWT - Food Science and Technology | 2015 | 25 Pages |
Abstract
Fruit and vegetables are believed to help fight against oxidative stress, given their natural content in radical scavenging compounds. Natural polyphenols neutralize reactive oxygen species by means of electron and hydrogen atom transfers. An HPLC method, hyphenated with a post-column reaction system relying on ABTS+ bleaching assay was applied in order to quantify the chemical activity of radical scavenging compounds in red cabbage, onion, quince, sweet cherry, strawberry, carrot and tomato. Hyphenated to the ABTS+ post-column reaction system, this method showed high antioxidant capacity notably in cherry, quince, onion, or red cabbage. Structural analysis of the compounds of interest showed the implication of several cyanidins and caffeoylquinic acids in cherry. Quince and red cabbage were found highly active through the presence of respectively caffeoylquinic acids, and an important content of diverse cyanidins variously glycosylated and acylated. The onion extract revealed a chemical core structure (quercetin) responsible for its antioxidant capacity. Moreover, our results showed that depending on the glycosylation profile of these compounds, their radical scavenging capacity can be very different.
Keywords
PFPHexahydroxydiphenoylAcetonitrilHHDPFeruloylpentafluorophenylSUC2,2'-azino-bis(3-ethylbenzothiazoline-6-sulphonic acid)HRMSLC-MSDADACNSPECQAABTSPTFEESIPBSnuclear magnetic resonancediode array detectorAntioxidantSolid phase extractioncaffeoylquinic acidFERstandard deviationsinNMRCyanidinMass spectrometryHigh resolution mass spectrometrytrolox equivalentFruit and vegetablespolytetrafluoroethylenePolyphenolshigh performance liquid chromatographyHPLCCouGluGlucosideelectrospray ionization
Related Topics
Life Sciences
Agricultural and Biological Sciences
Food Science
Authors
Remmelt Van Der Werf, Stéphanie Dal, Julie Le Grandois, Dalal Aoude-Werner, Fabien Digel, Said Ennahar, Séverine Sigrist, Eric Marchioni,