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从回顾性评估到天然产物分离的前瞻性决策:HPLC-SPE-NMR 分析红花。

From retrospective assessment to prospective decisions in natural product isolation: HPLC-SPE-NMR analysis of Carthamus oxyacantha.

机构信息

Department of Medicinal Chemistry, Faculty of Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.

出版信息

J Nat Prod. 2011 Nov 28;74(11):2454-61. doi: 10.1021/np200780m. Epub 2011 Nov 7.

Abstract

An extract of Carthamus oxyacantha (wild safflower) was investigated using two approaches: a traditional, nontarget fractionation by VLC and HPLC, and the hyphenated technique HPLC-PDA-HRMS-SPE-NMR followed by targeted isolation of selected constituents for inclusion in a screening library of pure natural products. While the nontarget fractionation involved considerable time spent on pursuing fractions containing well-known or undesired compounds, the hyphenated analysis was considerably faster and required less solvent and other consumables. The results were used to design and execute an optimized, HPLC-HRMS-guided, targeted isolation scheme aiming exclusively at a series of identified spiro compounds. Thus, HPLC-PDA-HRMS-SPE-NMR is a dereplication technique of choice, allowing economical acquisition of comprehensive data about compounds in crude extracts, which can be used for rational, prospective decisions about further isolation efforts. A total of 15 compounds were identified in the extract. Six spiro compounds, of which four have not previously been characterized, and tracheloside (a lignin glucoside) are presented with assigned 1H and 13C chemical shifts.

摘要

采用两种方法研究了红花(Carthamus oxyacantha,野生红花)提取物:一种是传统的非靶向 VLC 和 HPLC 分步提取法,另一种是 HPLC-PDA-HRMS-SPE-NMR 联用技术,然后针对选定的成分进行靶向分离,以纳入纯天然产物的筛选文库。虽然非靶向分步提取需要花费大量时间来寻找含有已知或不想要的化合物的馏分,但联用分析的速度要快得多,所需的溶剂和其他消耗品也更少。研究结果用于设计和执行优化的 HPLC-HRMS 引导的靶向分离方案,该方案专门针对一系列已鉴定的螺环化合物。因此,HPLC-PDA-HRMS-SPE-NMR 是一种首选的去重技术,可经济地获取粗提物中化合物的全面数据,从而可以对进一步的分离工作做出合理的前瞻性决策。从提取物中鉴定出 15 种化合物。其中 6 种螺环化合物,其中 4 种以前未被表征,以及 tracheloside(木质素葡萄糖苷),并给出了它们的 1H 和 13C 化学位移。

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