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Phenylpropanoid Glycoside Analogues: Enzymatic Synthesis, Antioxidant Activity and Theoretical Study of Their Free Radical Scavenger Mechanism

机译:苯丙烷糖苷类似物:酶法合成,抗氧化活性及其自由基清除剂机理的理论研究

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摘要

Phenylpropanoid glycosides (PPGs) are natural compounds present in several medicinal plants that have high antioxidant power and diverse biological activities. Because of their low content in plants (less than 5% w/w), several chemical synthetic routes to produce PPGs have been developed, but their synthesis is a time consuming process and the achieved yields are often low. In this study, an alternative and efficient two-step biosynthetic route to obtain natural PPG analogues is reported for the first time. Two galactosides were initially synthesized from vanillyl alcohol and homovanillyl alcohol by a transgalactosylation reaction catalyzed by Kluyveromyces lactis β-galactosidase in saturated lactose solutions with a 30%–35% yield. To synthesize PPGs, the galactoconjugates were esterified with saturated and unsaturated hydroxycinnamic acid derivatives using Candida antarctica Lipase B (CaL-B) as a biocatalyst with 40%–60% yields. The scavenging ability of the phenolic raw materials, intermediates and PPGs was evaluated by the 2,2-diphenyl-1-picrylhydrazyl radical (DPPH•) method. It was found that the biosynthesized PPGs had higher scavenging abilities when compared to ascorbic acid, the reference compound, while their antioxidant activities were found similar to that of natural PPGs. Moreover, density functional theory (DFT) calculations were used to determine that the PPGs antioxidant mechanism proceeds through a sequential proton loss single electron transfer (SPLET). The enzymatic process reported in this study is an efficient and versatile route to obtain PPGs from different phenylpropanoid acids, sugars and phenolic alcohols.
机译:苯丙烷类糖苷(PPG)是存在于几种药用植物中的天然化合物,具有高抗氧化能力和多种生物活性。由于它们在植物中的含量低(低于5%w / w),已经开发了几种化学合成路线来生产PPG,但是它们的合成是一个耗时的过程,并且通常获得的产量很低。在这项研究中,首次报道了获得天然PPG类似物的另一种有效的两步生物合成途径。最初,通过乳酸克鲁维酵母β-半乳糖苷酶在饱和乳糖溶液中催化的半乳糖基转移反应,从香草醇和高香草醇中合成了两个半乳糖苷,收率为30%至35%。为了合成PPG,使用南极假丝酵母脂肪酶B(CaL-B)作为生物催化剂,用饱和和不饱和的羟基肉桂酸衍生物将半乳糖缀合物酯化,产率为40%–60%。酚类原料,中间体和PPG的清除能力通过2,2-二苯基-1-吡啶并肼基(DPPH•)方法进行评估。已发现,与参考化合物抗坏血酸相比,生物合成的PPG具有更高的清除能力,而其抗氧化活性与天然PPG相似。此外,使用密度泛函理论(DFT)计算来确定PPG的抗氧化机理是通过顺序质子损失单电子转移(SPLET)进行的。这项研究中报道的酶促过程是从不同的苯丙酸,糖和酚类醇中获得PPG的有效途径。

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