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首页> 外文期刊>Dyes and Pigments >Analogs of anthocyanins with a 3',4'-dihydroxy substitution: Synthesis and investigation of their acid-base, hydration, metal binding and hydrogen-donating properties in aqueous solution
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Analogs of anthocyanins with a 3',4'-dihydroxy substitution: Synthesis and investigation of their acid-base, hydration, metal binding and hydrogen-donating properties in aqueous solution

机译:3',4'-二羟基取代的花色苷类似物:水溶液中酸碱,水合,金属结合和给氢性质的合成与研究

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摘要

Glycosides of hydroxylated flavylium ions are proposed as pertinent analogs of anthocyanins, a major class of polyphenolic plant pigments. Anthocyanins with a 3',4'-dihydroxy substitution on the B-ring (catechol nucleus) are especially important for their metal chelating and electron-donating (antioxidant) capacities. In this work, an efficient chemical synthesis of 3',4'-dihydroxy-7-0-|3-D-glucopyranosyloxy-flavylium chloride and its aglycone is repotted. Then, the ability of the two pigments to undergo proton transfer (formation of colored quinonoid bases) and add water (formation of a colorless chalcone) is investigated: at equilibrium the colored quinonoid bases (kinetic products) are present in very minor concentrations (<10% of the total pigment concentration) compared to the colorless chalcone (thermodynamic product). The glucopyranosyloxyflavylium ion appears significantly less acidic than the aglycone. The thermodynamics of the overall sequence of flavylium - chalcone conversion is not affected by the ?D-glucosyl moiety while the kinetics appears slower by a factor ca. 8. Although the glucopyranosyloxyflavylium ion and its aglycone display similar affinities for Al~(3+), the Al~(3+)-glucoside complex is more stable than the Al~(3+)-aglycone complex due to the higher sensitivity of the latter to water addition and conversion into the corresponding chalcone. Finally, the glucopyranosyloxyflavylium ion and its aglycone are compared for their ability to reduce the l,l-diphenyl-2-picrylhydrazyl radical in a mildly acidic water/MeOH (1:1) mixture as a first evaluation of their antioxidant activity. Glycosidation at C7-OH results in a lower rate constant of first electron transfer to DPPH and a lower stoichiometry (total number of l,l-diphenyl-2-picrylhydrazyl radicals reduced per pigment molecule). Anthocyanins are difficult to extract from plants in substantial amount. However, the analogs investigated in this work are of easy access by chemical synthesis and express the physico-chemical properties typical of anthocyanins. They can thus be regarded as valuable models for investigating the coloring, metal-binding and antioxidant properties of these important natural pigments.
机译:有人提出羟基化黄酮离子的糖苷作为花色苷的主要类似物,花色苷是一类主要的多酚类植物色素。在B环(儿茶酚核)上具有3',4'-二羟基取代的花色苷因其金属螯合和供电子(抗氧化剂)能力而特别重要。在这项工作中,提出了3',4'-二羟基-7-0- | 3-D-吡喃葡萄糖基氧合黄酮氯化物及其糖苷配基的有效化学合成方法。然后,研究了两种颜料进行质子转移(形成有色醌类碱)和加水(形成无色查尔酮)的能力:在平衡状态下,有色醌类碱(运动产物)的浓度很小(<相较于无色查尔酮(热力学产物),则为总颜料浓度的10%。吡喃葡萄糖基氧基黄酮离子的酸性似乎比糖苷配基低。黄酮-查尔酮转化的整个序列的热力学不受αD-葡萄糖基部分的影响,而动力学似乎慢了约1倍。 8.尽管吡喃葡萄糖基氧基黄酮离子及其糖苷配基对Al〜(3+)表现出相似的亲和力,但Al〜(3 +)-糖苷配体比Al〜(3 +)-糖苷配体更稳定,因为后者要加水并转化成相应的查尔酮。最后,比较了吡喃葡萄糖基氧基黄酮离子及其糖苷配基在弱酸性水/ MeOH(1:1)混合物中还原1,,1-二苯基-2-吡啶基肼基的能力,作为其抗氧化活性的首次评估。在C 7 -OH处的糖苷化导致较低的第一次电子转移至DPPH的速率常数和较低的化学计量比(每个颜料分子减少的1,1-二苯基-2-吡啶并肼基的总数)。花青素很难从植物中大量提取。但是,这项工作中研究的类似物很容易通过化学合成获得,并表达出花青素的典型物理化学性质。因此,它们可以被视为研究这些重要天然颜料的着色,金属结合和抗氧化性能的有价值的模型。

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