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Potential Activity Mechanisms of Aesculus hippocastanum Bark: Antioxidant Effects in Chemical and Biological In Vitro Models

机译:αushulushippocastanum树皮的潜在活动机制:化学和生物体外模型中的抗氧化作用

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摘要

The bark of Aesculus hippocastanum is an herbal remedy used in conditions connected with vascular insufficiency; however, there is a lack of data concerning its mechanisms of action. The present work is a preliminary investigation into some of the potential directions of the bark activity. The phytochemically (qualitative UHPLC-PDA-MS/MS and quantitative UHPLC-PDA assays) characterized extract and its four main constituents (esculin, fraxin, (‒)-epicatechin and procyanidin A2) were first evaluated in terms of their antioxidant capacity. All analytes demonstrated dose-dependent scavenging potential towards the most common in vivo oxidants, with particularly advantageous capacity of the extract and its flavan-3-ol constituents against peroxynitrite (3.37–13.26 mmol AA/g), hydroxyl radical (5.03–8.91 mmol AA/g) and superoxide radical (3.50–5.50 mmol AA/g). Moreover, even at low concentrations (1–5 µg/mL), they protected components of human plasma against oxidative damage inflicted by peroxynitrite, preventing oxidation of plasma protein thiols and diminishing the tyrosine nitration and lipid peroxidation. High efficiency of the analytes was also demonstrated in preventing the peroxynitrite-induced nitrative changes of fibrinogen (up to 80% inhibition for (‒)-epicatechin at 50 µg/mL), an important protein of coagulation cascade. Additionally, the extract and its constituents had, at most, moderate inhibitory activity towards platelet aggregation induced by ADP and only negligible influence on clotting times. The results show that, among the investigated properties, the antioxidant activity might, to the highest extent, be responsible for the bark efficacy in vascular disorders, thus supporting its application in those conditions; they also indicate the directions for future research that would allow for better understanding of the bark activity.
机译:欧洲七叶树的树皮与血管功能不全连接条件下使用一种草药;然而,有一个缺乏关于其作用机制的数据。目前的工作是初步调查,一些树皮活动的可能方向。所述phytochemically(定性UHPLC-PDA-MS / MS和定量UHPLC-PDA测定)其特征在于提取物和它的四个主要成分(七叶苷,fraxin,( - ) - 表儿茶素和原花青素A2)在它们的抗氧化能力方面首先评价。所有分析物表现出朝向体内氧化剂最常见的剂量依赖性清除电位,与该提取物及其黄烷-3-醇组分的特别有利的容量对过氧亚硝酸盐(3.37-13.26毫摩尔AA /克),羟自由基(5.03-8.91毫摩尔AA / g)和超氧自由基(3.50-5.50毫摩尔AA /克)。此外,即使在低浓度(1-5微克/毫升),它们保护的人血浆的组件免受氧化性损伤造成由过氧化亚硝酸盐,防止血浆蛋白质硫醇的氧化和减少的酪氨酸硝化和脂质过氧化。分析物的高效率也证明在防止纤维蛋白原的过氧化亚硝酸盐引起的硝化变化(高达80%的抑制为( - ) - 在50μg/ mL的表儿茶素),凝血级联中的重要蛋白。此外,提取物及其成分有,顶多缓和对由ADP诱导的血小板聚集,并只对凝血时间的影响可以忽略抑制活性。结果表明,所研究的特性中,该抗氧化剂活性可能,以最高的程度,负责在血管病症树皮功效,从而支持其在这些条件下的应用;他们还表示对未来的研究将允许更好地了解树皮活动的方向。

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