Flavonoids: Hemisynthesis, reactivity, characterization and free radical scavenging activity

被引:104
作者
Es-Safi, Nour-Eddine
Ghidouche, Souhila
Ducrot, Paul Henri
机构
[1] INRA, Unite Phytopharm & Mediateurs Chim, F-78026 Versailles, France
[2] Ecole Normale Super, Lab Chim Organ & Etudes Physicochim, Takaddoum Rabat, Morocco
关键词
polyphenols; flavonoids; flavanols; flavonols; flavones; procyanidins; dimerization; substituent effects; modified flavan-3-ols; synthesis; enzymatic oxidation; Trametes versicolor; antioxidant activity; DPPH;
D O I
10.3390/12092228
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Phenolic compounds form one of the main classes of secondary metabolites. They display a large range of structures and they are responsible for the major organoleptic characteristics of plant-derived-foods and beverages, particularly color and taste properties and they also contribute to the nutritional qualities of fruits and vegetables. Phenolic compounds are also highly unstable compounds which undergo numerous enzymatic and chemical reactions during postharvest food storage and processing thus adding to the complexity of plant polyphenol composition. Among these compounds flavonoids constitute one of the most ubiquitous groups of all plant phenolics. Owing to their importance in food orgatioleptic properties and in human health, a better understanding of their structures, their reactivity and chemical properties in addition to the mechanisms generating them appears essential to predict and control food quality. The purpose of this work is an overview of our findings concerning the hemisynthesis, the reactivity and the enzymatic oxidation of some flavonoids and shed light on the mechanisms involved in some of these processes and the structures of the resulting products. The free radical scavenging activity of some of the synthesized compounds is also presented and a structure-activity relationship is discussed. The first part of this review concerns the synthesis and structural characterization of modified monomeric flavanols. The use of these compounds as precursor for the preparation of natural and modified dimeric procyanidin derivatives was then explored through different coupling reactions. The full characterization of the synthesized compounds was achieved by concerted use of NMR and ESI-MS techniques. The free radical scavenging activity of some of the synthesized compounds was investigated. The second part of this review concerns the enzymatic oxidation of several flavonols by Trametes versicolor laccase. Most of the major oxidation products have been isolated as pure compounds and their structures unambiguously established through spectroscopic methods. Correlation between the structure of the oxidation product and the substitution pattern of the starting materials allows mechanistic features of this transformation to be elucidated.
引用
收藏
页码:2228 / 2258
页数:31
相关论文
共 66 条
[1]
[Anonymous], 1999, COMPREHENSIVE NATURA
[2]
ANTIOXIDATIVE PROPERTIES OF PROANTHOCYANIDINS .1. ANTIOXIDATIVE PROPERTIES OF PROCYANIDIN-B-1 AND PROCYANIDIN-B-3 FROM AZUKI BEANS IN AQUEOUS SYSTEMS [J].
ARIGA, T ;
KOSHIYAMA, I ;
FUKUSHIMA, D .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1988, 52 (11) :2717-2722
[3]
Total synthesis of isotopically labelled flavonoids.: Part 3:: 13C-labelled (-)-procyanidin B3 from 1-[13C]-acetic acid [J].
Arnaudinaud, V ;
Nay, B ;
Nuhrich, A ;
Deffieux, G ;
Mérillon, JM ;
Monti, JP ;
Vercauteren, J .
TETRAHEDRON LETTERS, 2001, 42 (07) :1279-1281
[4]
Total synthesis of isotopically labelled flavonoids.: Part 5:: Gram-scale production of 13C-labelled (-)-procyanidin B3 [J].
Arnaudinaud, V ;
Nay, B ;
Vergé, S ;
Nuhrich, A ;
Deffieux, G ;
Mérillon, JM ;
Monti, JP ;
Vercauteren, J .
TETRAHEDRON LETTERS, 2001, 42 (33) :5669-5671
[5]
EXTENSIVE HIGH-RESOLUTION REVERSE 2D NMR ANALYSIS FOR THE STRUCTURAL ELUCIDATION OF PROCYANIDIN OLIGOMERS [J].
BALAS, L ;
VERCAUTEREN, J .
MAGNETIC RESONANCE IN CHEMISTRY, 1994, 32 (07) :386-393
[6]
Synthesis and characterization of copper(I) and copper(II) flavonolate complexes with phthalazine ligand, and their oxygenation and relevance to quercetinase [J].
BaloghHergovich, E ;
Kaizer, J ;
Speier, G .
INORGANICA CHIMICA ACTA, 1997, 256 (01) :9-14
[7]
BAUMANN J, 1979, Naunyn-Schmiedeberg's Archives of Pharmacology, V308, pR27
[8]
Synthesis of modified proanthocyanidins:: introduction of acyl substituents at C-8 of catechin.: Selective synthesis of a C-4→O→C-3 ether-linked procyanidin-like dimer [J].
Beauhaire, J ;
Es-Safi, NE ;
Boyer, FD ;
Kerhoas, L ;
le Guernevé, C ;
Ducrot, PH .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2005, 15 (03) :559-562
[9]
The antioxidative effects of the isoflavan glabridin on endogenous constituents of LDL during its oxidation [J].
Belinky, PA ;
Aviram, M ;
Fuhrman, B ;
Rosenblat, M ;
Vaya, J .
ATHEROSCLEROSIS, 1998, 137 (01) :49-61
[10]
Oligomeric flavanoids.: Part 34:: Doubly-linked proteracacinidin analogues from Acacia caffra and Acacia galpinii [J].
Bennie, L ;
Coetzee, J ;
Malan, E ;
Woolfrey, JR ;
Ferreira, D .
TETRAHEDRON, 2001, 57 (04) :661-667