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朝着开发有前途的杀锥虫剂迈出的一步:基于费氏盐的曼尼希碱型衍生物的合成、表征和体外生物学评价。

A step towards development of promising trypanocidal agents: Synthesis, characterization and in vitro biological evaluation of ferrocenyl Mannich base-type derivatives.

机构信息

Universidad de Navarra, Department of Pharmaceutical Technology and Chemistry, Instituto de Salud Tropical, Pamplona, 31008, Spain.

Department of Parasitology, Instituto de Investigación Biosanitaria (ibs.GRANADA), Hospitales Universitarios De Granada/University of Granada, Granada, 18071, Spain.

出版信息

Eur J Med Chem. 2019 Feb 1;163:569-582. doi: 10.1016/j.ejmech.2018.12.005. Epub 2018 Dec 4.

DOI:10.1016/j.ejmech.2018.12.005
PMID:30554132
Abstract

Chagas disease is a neglected chronical parasitosis caused by the parasite Trypanosoma cruzi (T. cruzi). Nine ferrocenyl Mannich base derivatives were synthetized and characterized to explore their in vitro activity on three T. cruzi strains of the parasite and their cytotoxicity on Vero cells to calculate the selectivity index (SI). Compound 2, 1-ferrocenyl-3-(4-(4-(trifluoromethyl)phenyl)piperazin-1-yl)propan-1-one, stood out as the most promising derivative showing a half maximal inhibitory concentration (IC) value around 5 μM in both amastigote and trypomastigote forms of T. cruzi and SI values higher than 13, being the best value on the trypomastigote forms of the Arequipa strain (SI = 41.7). Moreover, 2 decreased the number of infected cells and was not genotoxic. Furthermore, its possible mechanism of action was studied through the alteration of the metabolites excreted by the parasite during glucose metabolism, the detection of mitochondrial alterations and the inhibition of superoxide dismutase (SOD). Finally, docking studies were executed to analyze the binding mode of the studied compounds to Fe-SOD enzyme.

摘要

恰加斯病是一种被忽视的慢性寄生虫病,由寄生虫克氏锥虫(T. cruzi)引起。合成并表征了 9 种二茂铁曼尼希碱衍生物,以研究它们对三种克氏锥虫寄生虫株的体外活性及其对 Vero 细胞的细胞毒性,以计算选择性指数(SI)。化合物 2,1-二茂铁基-3-(4-(4-(三氟甲基)苯基)哌嗪-1-基)-1-丙酮,表现出最有前途的衍生物,在克氏锥虫的无鞭毛体和鞭毛体形式中,半数最大抑制浓度(IC)值约为 5μM,SI 值高于 13,在阿雷基帕株的鞭毛体形式中具有最佳值(SI=41.7)。此外,化合物 2 减少了感染细胞的数量,并且没有遗传毒性。此外,通过改变寄生虫在葡萄糖代谢过程中排泄的代谢物、检测线粒体变化和抑制超氧化物歧化酶(SOD)来研究其可能的作用机制。最后,进行对接研究以分析所研究化合物与 Fe-SOD 酶的结合模式。

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