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Metabolomics coupled with proteomics advancing drug discovery toward more agile development of targeted combination therapies

机译:代谢组学与蛋白质组学相结合,促进了药物开发,从而使靶向组合疗法的开发更加敏捷

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摘要

To enhance the therapeutic efficacy and reduce the adverse effects of traditional Chinese medicine, practitioners often prescribe combinations of plant species and/or minerals, called formulae. Unfortunately, the working mechanisms of most of these compounds are difficult to determine and thus remain unknown. In an attempt to address the benefits of formulae based on current biomedical approaches, we analyzed the components of Yinchenhao Tang, a classical formula that has been shown to be clinically effective for treating hepatic injury syndrome. The three principal components of Yinchenhao Tang are Artemisia annua L., Gardenia jasminoids Ellis, and Rheum Palmatum L., whose major active ingredients are 6,7-dimethylesculetin (D), geniposide (G), and rhein (R), respectively. To determine the mechanisms underlying the efficacy of this formula, we conducted a systematic analysis of the therapeutic effects of the DGR compound using immunohistochemistry, biochemistry, metabolomics, and proteomics. Here, we report that the DGR combination exerts a more robust therapeutic effect than any one or two of the three individual compounds by hitting multiple targets in a rat model of hepatic injury. Thus, DGR synergistically causes intensified dynamic changes in metabolic biomarkers, regulates molecular networks through target proteins, has a synergistic/additive effect, and activates both intrinsic and extrinsic pathways.
机译:为了提高治疗功效并减少中药的不良反应,从业人员经常开出植物配方和/或矿物质的组合,称为配方。不幸的是,大多数这些化合物的工作机理难以确定,因此仍然未知。为了解决基于当前生物医学方法的配方带来的好处,我们分析了银尘好汤的成分,该配方已被证明在临床上可有效治疗肝损伤综合征。茵陈蒿汤的三个主要成分是青蒿,Garden子茉莉和大黄,它们的主要活性成分分别是6,7-二甲基七叶皂苷(D)、,子苷(G)和大黄酸(R)。为了确定该配方功效的潜在机制,我们使用免疫组织化学,生物化学,代谢组学和蛋白质组学对DGR化合物的治疗效果进行了系统分析。在这里,我们报道DGR组合通过击中大鼠肝损伤模型中的多个目标,比三种单独化合物中的任何一种或两种具有更强大的治疗作用。因此,DGR协同作用导致代谢生物标志物的动态变化加剧,通过靶蛋白调节分子网络,具有协同/累加作用,并激活内在和外在途径。

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