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High-throughput metabolomics and ingenuity pathway approach reveals the pharmacological effect and targets of Ginsenoside Rg1 in Alzheimer’s disease mice

机译:高通量代谢组学和独创性途径方法揭示了人参皂苷Rg1在阿尔茨海默氏病小鼠中的药理作用和靶标

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摘要

Ginsenoside Rg1, a natural triterpenoid saponins compound isolated from the Panax species, has been found to possess neuroprotective properties in neurodegenerative diseases such as Alzheimer’s disease (AD). However, its pharmacological mechanism on AD has not been studied. In this study, an ultra-performance liquid chromatography combined with quadrupole time of-flight mass spectrometry (UPLC-Q/TOF-MS) based non-targeted metabolomics strategy was performed to explore the mechanism of Ginsenoside Rg1 protecting against AD mice by characterizing metabolic biomarkers and regulation pathways changes. A total of nineteen potential metabolites in serum were discovered and identified to manifest the difference between wild-type mice and triple transgenic mice in control and model group, respectively. Fourteen potential metabolites involved in ten metabolic pathways such as linoleic acid metabolism, arachidonic acid metabolism, tryptophan metabolism and sphingolipid metabolism were affected by Rg1. From the ingenuity pathway analysis (IPA) platform, the relationship between gene, protein, metabolites alteration and protective activity of ginsenoside Rg1 in AD mice are deeply resolved, which refers to increased level of albumin, amino acid metabolism and molecular transport. In addition, quantitative analysis of key enzymes in the disturbed pathways by proteomics parallel reaction was employed to verify changed metabolic pathway under Ginsenoside Rg1. The UPLC-Q/TOF-MS based serum metabolomics method brings about new insights into the pharmacodynamic studies of Ginsenoside Rg1 on AD mice.
机译:人参皂苷Rg1是从人参中分离出的天然三萜皂苷化合物,已发现它在神经退行性疾病(例如阿尔茨海默氏病(AD))中具有神经保护特性。但是,尚未研究其对AD的药理机制。在本研究中,进行了基于四极杆飞行时间质谱(UPLC-Q / TOF-MS)的超目标液相色谱非靶向代谢组学策略,以通过表征代谢物来探索人参皂苷Rg1预防AD小鼠的机制。生物标志物和调控途径的改变。在血清中总共发现了十九种潜在的代谢物,并分别证明了对照组和模型组中野生型小鼠和三重转基因小鼠之间的差异。 Rg1影响亚油酸代谢,花生四烯酸代谢,色氨酸代谢和鞘脂代谢等十个代谢途径中的十四种潜在代谢物。从机能途径分析(IPA)平台,人参皂苷Rg1在AD小鼠中的基因,蛋白质,代谢物改变与保护活性之间的关系得到了深深的解决,这涉及白蛋白水平的提高,氨基酸代谢和分子转运。此外,通过蛋白质组学平行反应对干扰途径中关键酶的定量分析被用来验证人参皂苷Rg1改变的代谢途径。基于UPLC-Q / TOF-MS的血清代谢组学方法为人参皂苷Rg1对AD小鼠的药效学研究带来了新的见解。

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