首页> 外文期刊>Journal of Agricultural and Food Chemistry >Identification of Three Novel Polyphenolic Compounds, Origanine A-C, with Unique Skeleton from Origanum vulgare L Using the Hyphenated LC-DAD-SPE-NMR/MS Methods
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Identification of Three Novel Polyphenolic Compounds, Origanine A-C, with Unique Skeleton from Origanum vulgare L Using the Hyphenated LC-DAD-SPE-NMR/MS Methods

机译:用联用LC-DAD-SPE-NMR / MS方法从牛至L中鉴定三种具有独特骨架的三种新型多酚化合物Origanine A-C

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Identification of new compounds especially those with new skeletons from plant kingdom has long been a vital aspect for understanding phytochemistry, plant metabolisms and discovering new bioactive compounds. In this study, we identified and isolated three novel polyphenolic compounds, origanine A—C, from a well-researched plant Origanum vulgare L. using the hyphenated LC-DAD-SPE-NMR/MS methods. Based on the combined information from UV-visible, accurate mass and 2D NMR spectra together with computational calculations, we found that these compounds all had a novel skeleton of cyclohexenetetracarboxylic acids attached with some well-known bioactive moieties including 3,4-dihydroxyphenyl, 4-(β-D-glucopyranosyloxy)benzyl alcohol (gastrodin), and 3-(3,4-dihydroxyphenyl)lactic acid (danshensu) residues. These findings provided crucial information to fill the gaps in our knowledge in terms of the plant secondary metabolism. This study also indicated the necessity for further research in plant secondary metabolism for even well-studied plants and demonstrated the powermlness of the hyphenated LC-DAD-SPE-NMR/MS methods for comprehensive analysis of plant metabolites in particular for discovering new natural compounds.
机译:长期以来,鉴定新化合物,尤其是那些具有植物界新骨架的化合物一直是理解植物化学,植物代谢和发现新生物活性化合物的重要方面。在这项研究中,我们使用连接的LC-DAD-SPE-NMR / MS方法从经过深入研究的植物牛至属植物中鉴定和分离了三种新型多酚化合物,即牛至A-C。根据来自紫外可见,精确质量数和2D NMR光谱的综合信息以及计算结果,我们发现这些化合物都具有一个新的环己四羧酸骨架,并带有一些著名的生物活性部分,包括3,4-二羟基苯基,4 -(β-D-吡喃葡萄糖基氧基)苄醇(天麻素)和3-(3,4-二羟基苯基)乳酸(丹参素)残基。这些发现提供了重要的信息,以填补我们在植物次生代谢方面的知识空白。这项研究还表明,即使是经过充分研究的植物,也需要进一步研究植物的次生代谢,并证明了用联结的LC-DAD-SPE-NMR / MS方法对植物代谢物进行全面分析的能力,尤其是用于发现新的天然化合物。

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