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首页> 外文期刊>Analytica chimica acta >Experimental designs characterizing seasonal variations and solvent effects on the quantities of coumarin and related metabolites from Mikania laevigata
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Experimental designs characterizing seasonal variations and solvent effects on the quantities of coumarin and related metabolites from Mikania laevigata

机译:实验设计表征了季节变化和溶剂对来自Mikania laevigata的香豆素及相关代谢产物的影响

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Statistical design mixtures of acetone, chloroform, dichloromethane and ethanol were used to study the effects of different solvents and their mixtures on the quantities of coumarin and related metabolites extracted from Mikania laevigata samples harvested in each of the four seasons. RP-HPLC-DAD and both positive and negative modes of UPLC-MS analyses were used to determine relative quantities of coumarin, o-coumaric acid and melilotic acids in each season for all the mixture design extracts. The existence and measurement of the relative abundances of melilotic acid in Mikania laevigata have not been reported previously. Highest coumarin concentrations were encountered in the summer whereas its o-coumaric acid precursor and melilotic acid were most abundant in the spring. O-coumaric and melilotic acids concentrations were strongly correlated during the year. Also solvent effects were seen to be significant. Ethanol and 1:1 binary mixtures of ethanol and acetone extracted the largest quantities of coumarin whereas ethanolic binary and ternary mixtures with chloroform and dichloromethane provided the best yields of o-coumaric and melilotic acids. Statistical mixture models indicated that synergic binary interactions, especially those involving ethanol with acetone or chloroform, are important in the Mikania extraction process.
机译:使用丙酮,氯仿,二氯甲烷和乙醇的统计设计混合物研究了不同溶剂及其混合物对四个季节中每个季节收获的Mikania laevigata样品中提取的香豆素和相关代谢产物的影响。 RP-HPLC-DAD和UPLC-MS分析的正负两种模式均用于确定所有混合物设计提取物在每个季节中香豆素,邻香豆酸和Melilotic酸的相对量。以前没有报道过薇甘菊中melilotic酸的相对丰度的存在和测量。夏季遇到的香豆素浓度最高,而春季时其邻香豆酸的前体和melilotic酸含量最高。在这一年中,邻香豆酸和melilotic酸的浓度高度相关。溶剂的作用也很明显。乙醇和乙醇与丙酮的1:1二元混合物萃取了最大量的香豆素,而乙醇二元和三元混合物与氯仿和二氯甲烷的混合则提供了最佳的邻香豆酸和腈酸。统计混合物模型表明协同二元相互作用,尤其是涉及乙醇与丙酮或氯仿的相互作用,在薇甘菊提取过程中很重要。

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