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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design and synthesis of pentacyclic triterpene conjugates and their use in medicinal research
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Design and synthesis of pentacyclic triterpene conjugates and their use in medicinal research

机译:五环素三萜缀合物的设计与合成药用研究

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Triterpenoids are natural products from plants and many other organisms that have various biological activities, such as antitumor, antiviral, antimicrobial, and protective activities. This review covers the synthesis and biological evaluation of pentacyclic triterpene (PT) conjugates with other molecules that have been found to increase the IC50 or improve the pharmacological profile of the parent PT. Some of these molecules are designed to target specific proteins or cellular organelles, which has resulted in highly selective lead structures for drug development. Other PT conjugates are useful for investigating their mechanism of action. This concept has been very successful: 1) Many compounds, especially mitochondria-targeting PT conjugates, have reached a selective cytotoxicity at low nanomolar concentrations in cancer cells. 2) A number of PT conjugates have had high activity against HIV or the influenza virus. 3) Fluorescent PT conjugates have been able to visualize the FT in living cells, which has allowed quantification of the uptake and distribution of the PT within the cell. 4) Biotinylated PT conjugates have been used to identify target proteins, which may help to show their mechanism of action. 5) A large number of PT conjugates with polyethylene glycol (PEG), polyamines, etc. form nanometer-sized micelles that have a much better pharmacological profile than the PT alone. In summary, the connection of a PT to an appropriate modifying molecule has resulted in extremely useful semisynthetic compounds with a high potential to treat cancer or viral infections or compounds that are useful for the study of the mechanism of action of PTs at the molecular level. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:三萜是来自植物的天然产物和许多其他生物,具有各种生物活性,例如抗肿瘤,抗病毒药,抗菌药物和保护活性。该综述涵盖了与已经发现增加IC50或改善亲本PT的药理学谱的其他分子的五环三萜(Pt)缀合物的合成和生物学评价。这些分子中的一些设计用于靶向特异性蛋白质或细胞细胞器,这导致了用于药物发育的高度选择性铅结构。其他PT缀合物可用于调查其行动机制。这种概念非常成功:1)许多化合物,特别是线粒体靶向Pt缀合物,已在癌细胞中以低纳米摩尔浓度达到选择性细胞毒性。 2)许多PT缀合物对艾滋病毒或流感病毒具有高活性。 3)荧光Pt缀合物已经能够在活细胞中可视化ft,这使得允许定量对细胞内Pt的摄取和分布。 4)已经使用生物素化的Pt缀合物来鉴定靶蛋白,这可能有助于显示其作用机制。 5)大量PT缀合物与聚乙二醇(PEG),聚胺,等等形式的纳米尺寸的胶束具有比单独的PT好得多的药理学特征的。总之,Pt对适当的修饰分子的连接导致具有高潜力的极其有用的半合成化合物,以治疗可用于研究分子水平PTS作用机理的癌症或病毒感染或化合物。 (c)2019年Elsevier Masson SAS。版权所有。

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