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Discovery of Lipid Peroxidation Inhibitors from Bacopa Species Prioritized through Multivariate Data Analysis and Multi-Informative Molecular Networking

机译:通过多变量数据分析和多信息分子网络优先从Bacopa种中发现脂质过氧化抑制剂

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摘要

A major goal in the discovery of bioactive natural products is to rapidly identify active compound(s) and dereplicate known molecules from complex biological extracts. The conventional bioassay-guided fractionation process can be time consuming and often requires multi-step procedures. Herein, we apply a metabolomic strategy merging multivariate data analysis and multi-informative molecular maps to rapidly prioritize bioactive molecules directly from crude plant extracts. The strategy was applied to 59 extracts of three Bacopa species (B. monnieri, B. caroliniana and B. floribunda), which were profiled by UHPLC-HRMS2 and screened for anti-lipid peroxidation activity. Using this approach, six lipid peroxidation inhibitors >1–>6 of three Bacopa spp. were discovered, three of them being new compounds: monnieraside IV (>4), monnieraside V (>5) and monnieraside VI (>6). The results demonstrate that this combined approach could efficiently guide the discovery of new bioactive natural products. Furthermore, the approach allowed to evidence that main semi-quantitative changes in composition linked to the anti-lipid peroxidation activity were also correlated to seasonal effects notably for B. monnieri.
机译:发现生物活性天然产物的主要目的是快速鉴定一种或多种活性化合物,并从复杂的生物提取物中复制已知分子。常规的生物测定指导的分离过程可能很耗时,并且通常需要多步操作。在这里,我们应用了代谢组学策略,将多变量数据分析和多信息分子图谱相结合,可以直接对来自粗植物提取物的生物活性分子进行快速优先排序。该策略适用于三种Bacopa物种(B. monnieri,B。caroliniana和B. floribunda)的59种提取物,通过UHPLC-HRMS 2 对它们进行了分析,并筛选了抗脂质过氧化活性。使用这种方法,三个Bacopa物种中的六个脂质过氧化抑制剂> 1 – > 6 。发现了其中三种新化合物:monnieraside IV(> 4 ),monnieraside V(> 5 )和monnieraside VI(> 6 )。结果表明,这种组合方法可以有效指导新的生物活性天然产物的发现。此外,该方法可以证明与抗脂质过氧化活性有关的主要主要半定量组成变化也与季节效应密切相关。

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