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首页> 外文期刊>Pharmaceutical Chemistry Journal >Synthesis, Biological Evaluation and Ligand Based Pharmacophore Modeling of New Aromatic Thiosemicarbazones as Potential Anticancer Agents
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Synthesis, Biological Evaluation and Ligand Based Pharmacophore Modeling of New Aromatic Thiosemicarbazones as Potential Anticancer Agents

机译:新型芳香硫代蓟虫的合成,生物学评价和配体基于潜在抗癌剂的药物缺乏

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摘要

Two series of new aromatic thiosemicarbazone derivatives were synthesized by condensation of N-(4-cyanophenyl)hydrazine carbothioamide (I) and N-(4-methylsulfanylphenyl)hydrazine carbothioamide (II) with appropriate aromatic aldehydes in order to investigate their antiviral and cytostatic potency. The chemical structures of all compounds were fully characterized by elemental analysis and spectroscopic techniques. The results of the bioassays indicated that compounds Id, Ie, If and IIf proved inhibitory against influenza virus A (EC50 = 13 - 27 g/mL for strain H1N1 and 9.3 - 18 g/mL for strain H3N2). Compounds Ig and IIg were the most cytostatic compounds with inhibition of HeLa cell proliferation at an IC50 = 0.3 g/mL for Ig and 1.9 g/mL for IIg. Especially, compound Ig showed the highest cytostatic activity with IC50 of 0.30, 0.70 and 2.50 g/mL against HeLa, CEM and L1210 cell lines, respectively. This inhibition range was within the same order of magnitude as that for cisplatin. Furthermore, molecular modeling was carried out to examine the cytostatic activity and determine the best pharmacophore model as a guide for the design and development of potential prodrugs in future studies.
机译:通过用适当的芳族醛(I)和N-(4-甲基磺酰基)肼(I)和N-(4-甲基磺酰基苯基)肼碳甲酰胺(II),通过合适的芳香族醛(II)来合成两种新的芳香硫代氧化脲衍生物。为了研究其抗病毒和细胞抑制效力。所有化合物的化学结构通过元素分析和光谱技术完全表征。生物测定的结果表明,化合物ID,即IF,IF被证明对菌株H1N1的菌株H1N1和9.3-18g / mL的抑制性抑制型病毒A(EC50 = 13-27g / ml)。化合物Ig和IIG是最多的细胞抑制化合物,其在Ig和1.9g / ml的Ig50 = 0.3g / ml下抑制Hela细胞增殖。特别是,复合Ig分别显示出对Hela,CEM和L1210细胞系的IC 50,IC50,0.30和2.50g / ml的最高细胞抑制活性。这种抑制范围在与顺铂的相同数量级内。此外,进行分子建模以检查细胞抑制活性,并确定最佳药物科学模型作为未来研究中潜在前药的设计和开发的指南。

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