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Characterization of Metabolite Profile in Phyllanthus niruri and Correlation with Bioactivity Elucidated by Nuclear Magnetic Resonance Based Metabolomics

机译:楠竹代谢产物谱的表征及其与基于核磁共振代谢组学阐明的生物活性的相关性

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Phyllanthus niruri is an important medicinal plant. To standardize the extract and guarantee its maximum benefit, processing methods optimization ought to be amenable and beneficial. Herein, three dried P. niruri samples, air (AD), freeze (FD) and oven (OD), extracted with various ethanol to water ratios (0%, 50%, 70%, 80% and 100%) were evaluated for their metabolite changes using proton nuclear magnetic resonance (1H-NMR)-based metabolomics approach. The amino acids analysis showed that FD P. niruri exhibited higher content of most amino acids compared to the other dried samples. Based on principal component analysis (PCA), the FD P. niruri extracted with 80% ethanol contained higher amounts of hypophyllanthin and phenolic compounds based on the loading plot. The partial least-square (PLS) results showed that the phytochemicals, including hypophyllanthin, catechin, epicatechin, rutin, quercetin and chlorogenic, caffeic, malic and gallic acids were correlated with antioxidant and α-glucosidase inhibitory activities, which were higher in the FD material extracted with 80% ethanol. This report optimized the effect of drying and ethanol ratios and these findings demonstrate that NMR-based metabolomics was an applicable approach. The FD P. niruri extracted with 80% ethanol can be used as afunctional food ingredient for nutraceutical or in medicinal preparation. View Full-Text
机译:楠木(Phyllanthus niruri)是重要的药用植物。为了使提取物标准化并确保其最大利益,加工方法的优化应该是可行和有益的。在此,对三种干燥的体育假单胞菌样品(空气(AD),冷冻(FD)和烤箱(OD))进行了评估,并用各种乙醇与水的比例(0%,50%,70%,80%和100%)提取。使用基于质子核磁共振(1H-NMR)的代谢组学方法研究它们的代谢物变化。氨基酸分析表明,FD P. niruri与其他干燥样品相比,大多数氨基酸含量更高。根据主成分分析(PCA),根据装载图,用80%乙醇提取的FD纳希氏疟原虫含有更高含量的次花青素和酚类化合物。偏最小二乘(PLS)结果表明,植物化学物质包括叶绿素,儿茶素,表儿茶素,芦丁,槲皮素和绿原酸,咖啡酸,苹果酸和没食子酸与抗氧化剂和α-葡萄糖苷酶抑制活性相关,在FD中较高用80%乙醇提取物质。该报告优化了干燥和乙醇比例的影响,这些发现表明基于NMR的代谢组学是一种适用的方法。用80%乙醇提取的FD P. niruri可用作营养食品或药物制剂中的功能性食品成分。查看全文

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