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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Coordination of nitro-thiosemicarbazones to ruthenium(II) as a strategy for anti-trypanosomal activity improvement.
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Coordination of nitro-thiosemicarbazones to ruthenium(II) as a strategy for anti-trypanosomal activity improvement.

机译:硝基硫代半氨基甲酮与钌(II)的配位作为抗锥虫活性改善的策略。

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摘要

Complexes [RuCl(H4NO(2)Fo4M)(bipy)(dppb)]PF(6) (1), [RuCl(H4NO(2)Fo4M)(Mebipy)(dppb)]PF(6) (2), [RuCl(H4NO(2)Fo4M)(phen)(dppb)]PF(6) (3), [RuCl(H4NO(2)Ac4M)(bipy)(dppb)]PF(6) (4), [RuCl(H4NO(2)Ac4M)(Mebipy)(dppb)]PF(6) (5) and [RuCl(H4NO(2)Ac4M)(phen)(dppb)]PF(6) (6) with N(4)-methyl-4-nitrobenzaldehyde thiosemicarbazone (H4NO(2)Fo4M) and N(4)-methyl-4-nitroacetophenone thiosemicarbazone (H4NO(2)Ac4M) were obtained from [RuCl(2)(bipy)(dppb)], [RuCl(2)(Mebipy)(dppb)], and [RuCl(2)(phen)(dppb)], (dppb = 1,4-bis(diphenylphospine)butane; bipy = 2,2'-bipyridine; Mebipy = 4,4'-dimethyl-2,2'-bipyridine; phen = 1,10-phenanthroline). In all cases the thiosemicarbazone is attached to the metal center through the sulfur atom. Complexes (1-6), together with the corresponding ligands and the Ru precursors were evaluated for their ability to in vitro suppress the growth of Trypanosoma cruzi. All complexes were more active than their corresponding ligands and precursors. Complexes (1-3) and (5) revealed to be the most active among all studied compounds with ID(50) = 0.6-0.8 microM. In all cases the association of the thiosemicarbazone with ruthenium, dppb and bipyridine or phenanthroline in one same complex proved to be an excellent strategy for activity improvement.
机译:络合物[RuCl(H4NO(2)Fo4M)(bipy)(dppb)] PF(6)(1),[RuCl(H4NO(2)Fo4M)(Mebipy)(dppb)] PF(6)(2),[ RuCl(H4NO(2)Fo4M)(phen)(dppb)] PF(6)(3),[RuCl(H4NO(2)Ac4M)(bipy)(dppb)] PF(6)(4),[RuCl( H4NO(2)Ac4M)(Mebipy)(dppb)] PF(6)(5)和[RuCl(H4NO(2)Ac4M)(phen)(dppb)] PF(6)(6)和N(4)-从[RuCl(2)(bipy)(dppb)],[RuCl (2)(Mebipy)(dppb)]和[RuCl(2)(phen)(dppb)],(dppb = 1,4-双(二苯基膦)丁烷; bipy = 2,2'-联吡啶; Mebipy = 4 ,4′-二甲基-2,2′-联吡啶; phen = 1,10-菲咯啉)。在所有情况下,硫半脲都通过硫原子连接到金属中心。评价复合物(1-6),以及相应的配体和Ru前体在体外抑制克氏锥虫生长的能力。所有复合物均比其相应的配体和前体更具活性。配合物(1-3)和(5)在ID(50)= 0.6-0.8 microM的所有研究化合物中显示出最高的活性。在所有情况下,硫半脲与钌,dppb和联吡啶或菲咯啉在同一复合物中的缔合都是提高活性的极佳策略。

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