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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Characterization, anti-oxidative effect of grape seed powder and in silico affinity profiling of polyphenolic and extra-phenolic compounds for calpain inhibition
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Characterization, anti-oxidative effect of grape seed powder and in silico affinity profiling of polyphenolic and extra-phenolic compounds for calpain inhibition

机译:葡萄种子粉末的表征,抗氧化作用以及多酚和超酚类化合物的硅亲和力分析,用于钙骨抑制作用

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摘要

Vitis vinifera grape is a highly cultivated crop and solid wastes generated by the wine industry are largely under exploited. Plentiful studies have intended analyzing the polyphenolic content of grape seeds but characterization of non phenolic compounds is rather scarce. The present study aimed at the selective extraction of lipid, phenolic and aqueous phases from grape seed powder (GSP) in order to establish their intimate composition, as well as their antioxidant and chelating properties underlying partly their biological effects. Major non phenolic compounds identified in the lipid phase were glyceryl-monostearate and 2-monostearin whereas fructofuranose and sucrose were the most abundant in the aqueous phase. Among the most abundant compounds detected in the various phases, the polyphenol quercetin exhibited the best affinity and free binding energy towards the active site of the calcium-dependent protease calpain. Polyphenols likely constitute the bioactive part of GSP that should be exploited as safe modulators of intracellular signaling which is likely at the basis of their health beneficial effects. Nevertheless other compounds as lipids or sugars should be valorized along with polyphenols to improve their bioavailability into highly protected organs as brain or eye. (C) 2018 Elsevier B.V. All rights reserved.
机译:葡萄vinifera葡萄是葡萄酒行业产生的壮大作物,葡萄酒行业产生的固体废物在很大程度上被剥削。丰富的研究旨在分析葡萄种子的多酚含量,但非酚类化合物的表征相当稀缺。本研究旨在选择性提取脂籽粉(GSP)的脂质,酚类和含水阶段,以建立其亲密的组成,以及它们的抗氧化剂和螯合性质,部分地为它们的生物学作用。在脂质相中鉴定的主要非酚类化合物是甘油 - 单硬脂酸酯和2-单杆菌,而Fructofuranose和蔗糖在水相中最丰富。在各个阶段检测到的最丰富的化合物中,多酚槲皮素朝向依赖钙蛋白酶钙骨的活性位点表现出最佳亲和力和自由结合能。多酚可能构成GSP的生物活性部分,应该被利用作为细胞内信号传导的安全调制器,这可能是在健康的有益效果的基础上。然而,其他化合物作为脂质或糖应该与多酚储存,以将其生物利用度改善为高度保护的器官作为脑或眼睛。 (c)2018年elestvier b.v.保留所有权利。

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