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首页> 外文期刊>Current medicinal chemistry >Novel biotransformation process of podophyllotoxin to 4β-sulfur- substituted podophyllum derivates with anti-tumor activity by penicillium purpurogenum Y.J. Tang
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Novel biotransformation process of podophyllotoxin to 4β-sulfur- substituted podophyllum derivates with anti-tumor activity by penicillium purpurogenum Y.J. Tang

机译:紫青霉Y.J. Tang对鬼臼毒素新的生物转化过程进行抗生物活性的4β-硫取代的鬼臼衍生物的生物转化

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摘要

According to the structure-function relationship of podophyllotoxin (PTOX) and its analogue of 4'-demethylepipodophyllotoxin (DMEP), the 4β-substitution of sulfur-containing heterocyclic compounds with a carbon-sulfur bond at 4 position of PTOX or DMEP is an essential modification direction for improving the anti-tumor activity. So, four novel 4β-sulfursubstituted podophyllum derivatives (i.e., 4β-(1,2,4- triazole-3-yl)sulfanyl-4-deoxy-podophyllotoxin (4-MT-PTOX), 4β-(1,3,4- thiadiazole-2-yl)sulfanyl-4-deoxy-podophyllotoxin (4-MTD-PTOX), 4β-(1,2,4-triazole-3-yl)sulfanyl-4-deoxy-4'-demethylepipodophyllotoxin (4-MT-DMEP), and 4β-(1,3,4-thiadiazole-2-yl)sulfanyl-4-deoxy-4'- demethylepipodophyllotoxin (4-MTD-DMEP)) were designed and then successfully biosynthesized in this work. In the novel sulfur-substituted biotransformation processes, PTOX and DMEP was linked with sulfur-containing compounds (i.e., 3-mercapto-1,2,4-triazole (MT) and 2-mercapto-1,3,4-thiadiazole (MTD)) at 4 position of cycloparaffin to produce 4-MT-PTOX (1), 4-MTD-PTOX (2), 4-MT-DMEP (3), and 4-MTD-DMEP (4) by Penicillium purpurogenum Y.J. Tang, respectively, which was screened out from Diphylleia sinensis Li (Hubei, China). All the novel compounds exhibited promising in vitro bioactivity, especially 4-MT-PTOX (1). Compared with etoposide (i.e., a 50% effective concentration [EC50] of 25.72, 167.97, and 1.15 μM), the EC50 values of 4-MT-PTOX (1) against tumor cell line BGC-823, A549 and HepG2 (i.e., 0.28, 0.76, and 0.42 μM) were significantly improved by 91, 221 and 2.73 times, respectively. Moreover, the EC50 value of 4-MT-PTOX (1) against the normal human cell line HK-2 (i.e., 182.4 μM) was 19 times higher than that of etoposide (i.e., 9.17 μM). Based on the rational design, four novel 4β-sulfur-substituted podophyllum derivatives with superior in vitro anti-tumor activity were obtained for the first time. The correctness of structure-function relationship and rational drug design was strictly demonstrated by the in vitro biological activity tests.
机译:根据鬼臼毒素(PTOX)及其类似物4'-脱甲基表鬼臼毒素(DMEP)的结构-功能关系,在PTOX或DMEP的4位具有碳硫键的含硫杂环化合物的4β取代是必不可少的修饰方向,以提高抗肿瘤活性。因此,有四种新颖的4β-硫取代的鬼臼衍生物(即4β-(1,2,4-三唑-3-基)硫烷基-4-脱氧鬼臼毒素(4-MT-PTOX),4β-(1,3,4 -噻二唑-2-基)硫烷基-4-脱氧鬼臼毒素(4-MTD-PTOX),4β-(1,2,4-三唑-3-基)硫烷基-4-脱氧-4'-去甲基鬼臼毒素(4-设计了MT-DMEP)和4β-(1,3,4-噻二唑-2-基)硫烷基-4-脱氧-4'-脱甲基表鬼臼毒素(4-MTD-DMEP)),然后成功地进行了生物合成。在新的硫取代的生物转化过程中,PTOX和DMEP与含硫化合物(即3-巯基1,2,4-三唑(MT)和2-巯基1,3,4-噻二唑(MTD)连接))在环烷烃的4位上通过青霉青霉YJ Tang产生4-MT-PTOX(1),4-MTD-PTOX(2),4-MT-DMEP(3)和4-MTD-DMEP(4)分别从中华白桦(中国湖北)中筛选出来。所有这些新化合物都显示出有希望的体外生物活性,尤其是4-MT-PTOX(1)。与依托泊苷相比(50%有效浓度[EC50]为25.72、167.97和1.15μM),4-MT-PTOX(1)对肿瘤细胞系BGC-823,A549和HepG2的EC50值(即0.28、0.76和0.42μM)分别显着提高了91、221和2.73倍。此外,4-MT-PTOX(1)对正常人细胞系HK-2的EC50值(即182.4μM)比依托泊苷(9.17μM)高19倍。在合理设计的基础上,首次获得了四种具有优异的体外抗肿瘤活性的4β-硫取代的鬼臼衍生物。通过体外生物活性测试严格证明了结构-功能关系和合理药物设计的正确性。

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