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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Study of 5-nitroindazoles' anti-Trypanosoma cruzi mode of action: electrochemical behaviour and ESR spectroscopic studies.
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Study of 5-nitroindazoles' anti-Trypanosoma cruzi mode of action: electrochemical behaviour and ESR spectroscopic studies.

机译:5-硝基吲唑类抗克氏锥虫作用模式的研究:电化学行为和ESR光谱研究。

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摘要

New indazole derivatives have been developed to know about structural requirements for adequate anti-Trypanosoma cruzi activity. In relation to position 1 of indazole ring, we have observed that a butylaminopentyl substituent (14) affords good activity, but N-oxidation of omega-tertiary amino moiety yields completely inactive compounds (17, 18); the substituent at position 3 of indazole ring affects drastically the in vitro activity, 3-OH derivative 13 being completely inactive. On the other hand, since compound 22, denitro-analogue of active compound 4, does not show activity, the 5-nitro substituent of indazole ring seems to be essential. Intramolecular cyclization of side chain at position 1 also affords inactive compounds (19, 20). The electrochemical studies showed that the trypanocidal 5-nitroindazole derivatives yielded nitro-anion radical via one-electron process at physiological pH. This electrochemical behaviour occurs in the parasite according to ESR experiment with the T. cruzi microsomal fraction showing that 5-nitroindazole derivatives suffer bio-reduction without reactive oxygen species generation.
机译:已经开发出新的吲唑衍生物以了解足够的抗克鲁氏锥虫活性的结构要求。关于吲唑环的1位,我们发现丁基氨基戊基取代基(14)具有良好的活性,但是ω-叔氨基部分的N-氧化产生了完全不活泼的化合物(17、18)。吲唑环第3位的取代基极大地影响了体外活性,3-OH衍生物13完全失活。另一方面,由于化合物22,活性化合物4的脱硝基类似物没有显示活性,因此吲唑环的5-硝基取代基似乎是必需的。位置1的侧链的分子内环化作用也提供了惰性化合物(19,20)。电化学研究表明,在生理pH下,锥虫性5-硝基吲唑衍生物通过单电子过程产生了硝基阴离子自由基。根据ESR实验,在克鲁氏锥虫微粒体级分的寄生虫中发生了这种电化学行为,表明5-硝基吲唑衍生物遭受了生物还原反应,而没有产生活性氧。

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