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用于治疗锥虫感染的芳基硫代氨基脲。

Aryl thiosemicarbazones for the treatment of trypanosomatidic infections.

作者信息

Linciano Pasquale, Moraes Carolina B, Alcantara Laura M, Franco Caio H, Pascoalino Bruno, Freitas-Junior Lucio H, Macedo Sara, Santarem Nuno, Cordeiro-da-Silva Anabela, Gul Sheraz, Witt Gesa, Kuzikov Maria, Ellinger Bernhard, Ferrari Stefania, Luciani Rosaria, Quotadamo Antonio, Costantino Luca, Costi Maria Paola

机构信息

University of Modena and Reggio Emilia, Via Campi 103, 41125 Modena, Italy.

Brazilian Biosciences National Laboratory (LNBio), Brazilian Center for Research in Energy and Materials (CNPEM), 13083-970, Campinas, SP, Brazil.

出版信息

Eur J Med Chem. 2018 Feb 25;146:423-434. doi: 10.1016/j.ejmech.2018.01.043. Epub 2018 Jan 31.

Abstract

Basing on a library of thiadiazole derivatives showing anti-trypanosomatidic activity, we have considered the thiadiazoles opened forms and reaction intermediates, thiosemicarbazones, as compounds of interest for phenotypic screening against Trypanosoma brucei (Tb), intracellular amastigote form of Leishmania infantum (Li) and Trypanosoma cruzi (Tc). Similar compounds have already shown interesting activity against the same organisms. The compounds were particularly effective against T. brucei and T. cruzi. Among the 28 synthesized compounds, the best one was (E)-2-(4-((3.4-dichlorobenzyl)oxy)benzylidene) hydrazinecarbothioamide (A14) yielding a comparable anti-parasitic activity against the three parasitic species (TbEC = 2.31 μM, LiEC = 6.14 μM, TcEC = 1.31 μM) and a Selectivity Index higher than 10 with respect to human macrophages, therefore showing a pan-anti-trypanosomatidic activity. (E)-2-((3'.4'-dimethoxy-[1.1'-biphenyl]-3-yl)methyle ne) hydrazinecarbothioamide (A12) and (E)-2-(4-((3.4-dichlorobenzyl)oxy)benzylidene)hydrazine carbothioamide (A14) were able to potentiate the anti-parasitic activity of methotrexate (MTX) when evaluated in combination against T. brucei, yielding a 6-fold and 4-fold respectively Dose Reduction Index for MTX. The toxicity profile against four human cell lines and a panel of in vitro early-toxicity assays (comprising hERG, Aurora B, five cytochrome P450 isoforms and mitochondrial toxicity) demonstrated the low toxicity for the thosemicarbazones class in comparison with known drugs. The results confirmed thiosemicarbazones as a suitable chemical scaffold with potential for the development of properly decorated new anti-parasitic drugs.

摘要

基于一个显示出抗锥虫活性的噻二唑衍生物库,我们认为噻二唑的开环形式和反应中间体硫代氨基脲是针对布氏锥虫(Tb)、婴儿利什曼原虫(Li)的细胞内无鞭毛体形式和克氏锥虫(Tc)进行表型筛选的有意义的化合物。类似的化合物已对相同生物体显示出有趣的活性。这些化合物对布氏锥虫和克氏锥虫特别有效。在28种合成化合物中,最佳的是(E)-2-(4-((3,4-二氯苄基)氧基)亚苄基)肼基甲硫酰胺(A14),对三种寄生虫物种具有相当的抗寄生虫活性(TbEC = 2.31 μM,LiEC = 6.14 μM,TcEC = 1.31 μM),并且相对于人类巨噬细胞的选择性指数高于10,因此显示出泛抗锥虫活性。(E)-2-((3',4'-二甲氧基-[1,1'-联苯]-3-基亚甲基)肼基甲硫酰胺(A12)和(E)-2-(4-((3,4-二氯苄基)氧基)亚苄基)肼基甲硫酰胺(A14)在与甲氨蝶呤(MTX)联合针对布氏锥虫进行评估时能够增强其抗寄生虫活性,MTX的剂量降低指数分别为6倍和4倍。针对四种人类细胞系的毒性谱和一组体外早期毒性试验(包括hERG、极光激酶B、五种细胞色素P450同工型和线粒体毒性)表明,与已知药物相比,硫代氨基脲类的毒性较低。结果证实硫代氨基脲是一种合适的化学骨架,具有开发经过适当修饰的新型抗寄生虫药物的潜力。

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