首页> 外文期刊>Journal of natural products >Targeted Isolation of Neuroprotective Dicoumaroyl Neolignans and Lignans from Sageretia theezans Using in Silico Molecular Network Annotation Propagation-Based Dereplication
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Targeted Isolation of Neuroprotective Dicoumaroyl Neolignans and Lignans from Sageretia theezans Using in Silico Molecular Network Annotation Propagation-Based Dereplication

机译:来自Sageretia Theezans的神经保护型Dicoumaroyl Neolignans和Lignans的靶向分离在基于硅的分子网络注释传播的全体法中

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摘要

The integration of LC-MS/MS molecular networking and in silico MS/MS fragmentation is an emerging method for dereplication of natural products. In the present study, a targeted isolation of natural products using a new in silico-based annotation tool named Network Annotation Propagation (NAP) is described. NAP improves accuracy of in silico fragmentation analyses by reranking candidate structures based on the network topology from MS/MS-based molecular networking. Annotation for the MS/MS spectral network of the Sageratia theezans twig extract was performed using NAP, and most molecular families within the network, including the known triterpenoids 1-7, could be putatively annotated, without relying on any previous reports of molecules from this species. Based on the in silico dereplication results, molecules were prioritized for isolation. In total, six dicoumaroyl 8-O-4' neolignans (8-13) and three dicoumaroyl lignans (14-16) were isolated from the twigs of S. theezans and structurally characterized by spectroscopic analyses. Isolates were evaluated for their neuroprotective activity, and compounds 14-16 showed potent protective effects against glutamate-induced oxidative stress in mouse HT22 cells at a concentration of 12.5 mu M.
机译:LC-MS / MS分子网络和硅MS / MS碎片中的整合是一种用于天然产物的含量的新出现方法。在本研究中,描述了使用新的基于基于硅的注释工具(命名的网络注释传播(NAP)的自然产品的目标隔离。基于来自基于MS / MS的分子网络的网络拓扑结构,通过重新登记候选结构来提高硅碎片分析的精度。使用午睡进行Sagteria Theezans曲根提取物的MS / MS光谱网络的注释,并且网络内的大多数分子家族,包括已知的三萜素1-7,无需依赖于来自此的任何分子报告物种。基于Silico绝经结果,优先分离分子以进行分离。总共有六个二豆酰8-O-4'Neolignans(8-13)和三个Dicoumaroyl Lignans(14-16)与S. Theezans的枝分离,并在结构上以光谱分析为特征。评估分离物的神经保护活性,化合物14-16在小鼠HT22细胞中以12.5μmm的浓度显示出对谷氨酸诱导的氧化应激的有效保护作用。

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