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Limonoids from Melia azedarach Fruits as Inhibitors of Flaviviruses and Mycobacterium tubercolosis

机译:Mel苦瓜果实中的柠檬苦素类作为黄病毒和结核分枝杆菌的抑制剂

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摘要

The biological diversity of nature is the source of a wide range of bioactive molecules. The natural products, either as pure compounds or as standardized plant extracts, have been a successful source of inspiration for the development of new drugs. The present work was carried out to investigate the cytotoxicity, antiviral and antimycobacterial activity of the methanol extract and of four identified limonoids from the fruits of Melia azedarach (Meliaceae). The extract and purified limonoids were tested in cell-based assays for antiviral activity against representatives of ssRNA, dsRNA and dsDNA viruses and against Mycobacterium tuberculosis. Very interestingly, 3-α-tigloyl-melianol and melianone showed a potent antiviral activity (EC50 in the range of 3–11μM) against three important human pathogens, belonging to Flaviviridae family, West Nile virus, Dengue virus and Yellow Fever virus. Mode of action studies demonstrated that title compounds were inhibitors of West Nile virus only when added during the infection, acting as inhibitors of the entry or of a very early event of life cycle. Furthermore, 3-α-tigloyl-melianol and methyl kulonate showed interesting antimycobacterial activity (with MIC values of 29 and 70 μM respectively). The limonoids are typically lipophilic compounds present in the fruits of Melia azeradach. They are known as cytotoxic compounds against different cancer cell lines, while their potential as antiviral and antibacterial was poorly investigated. Our studies show that they may serve as a good starting point for the development of novel drugs for the treatment of infections by Flaviviruses and Mycobacterium tuberculosis, for which there is a continued need.
机译:大自然的生物多样性是多种生物活性分子的来源。天然产物,无论是纯化合物还是标准植物提取物,都是成功开发新药的灵感之源。进行本工作以研究甲醇提取物和Mel豆(Mel科)果实中四种已鉴定的柠檬苦素的细胞毒性,抗病毒和抗分枝杆菌活性。在基于细胞的分析中测试了提取物和纯化的柠檬苦素类化合物对ssRNA,dsRNA和dsDNA病毒代表以及对结核分枝杆菌的抗病毒活性。有趣的是,3-α-tigloyl-melianol和me烯酮对三种重要的人类病原体(黄病毒科,西尼罗河病毒,登革热和黄热病病毒)表现出有效的抗病毒活性(EC50在3-11μM范围内)。作用方式研究表明,标题化合物仅在感染过程中添加才是西尼罗河病毒的抑制剂,可作为进入生命周期或生命周期非常早期事件的抑制剂。此外,3-α-tigloyl-melianol和苦瓜酸甲酯显示出有趣的抗分枝杆菌活性(MIC值分别为29和70μM)。柠檬苦素通常是存在于Mel子果实中的亲脂性化合物。它们被称为针对不同癌细胞系的细胞毒性化合物,但其抗病毒和抗菌潜力却未得到充分研究。我们的研究表明,它们可能是开发用于治疗黄病毒和结核分枝杆菌感染的新型药物的良好起点,对此仍存在持续的需求。

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