喹啉1,4二n -氧化物衍生物作为锥虫硫酮还原酶抑制剂的杀锥虫活性

K. F. Chacón-Vargas, B. Nogueda-Torres, L. Sánchez-Torres, Erick Suárez-Contreras, Juan C Villalobos-Rocha, Yuridia Torres-Martínez, E. E. Lara-Ramírez, G. Fiorani, R. Krauth-Siegel, M. Bolognesi, A. Monge, G. Rivera
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引用次数: 29

摘要

恰加斯病或美洲锥虫病是一个全球性的公共卫生问题。在这项工作中,我们评估了26个新的丙基和异丙基喹啉-7-羧酸1,4-二n -氧化物衍生物作为潜在的锥虫剂。此外,还对锥虫硫酮还原酶(TR)进行了分子对接和酶促分析,为其潜在的作用机制提供了依据。7种化合物对锥体线虫的杀虫活性优于对照药物,只有4种化合物对锥体线虫有杀虫活性;T-085为先导化合物,对NINOA和INC-5菌株的IC50分别为59.9和73.02µM。硅分析表明,化合物T-085是一种潜在的TR抑制剂,具有比天然底物更好的亲和力。酶促分析表明,T-085对疟原虫TR具有非竞争性抑制作用。化合物T-085分别在2-、3-和7-位置上含有羰基、CF3和羧酸异丙基。这些结果表明,该化合物的化学结构为设计和合成具有较高TR抑制效力和较低毒性的新型锥虫衍生物提供了良好的起点。
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Trypanocidal Activity of Quinoxaline 1,4 Di-N-oxide Derivatives as Trypanothione Reductase Inhibitors
Chagas disease or American trypanosomiasis is a worldwide public health problem. In this work, we evaluated 26 new propyl and isopropyl quinoxaline-7-carboxylate 1,4-di-N-oxide derivatives as potential trypanocidal agents. Additionally, molecular docking and enzymatic assays on trypanothione reductase (TR) were performed to provide a basis for their potential mechanism of action. Seven compounds showed better trypanocidal activity on epimastigotes than the reference drugs, and only four displayed activity on trypomastigotes; T-085 was the lead compound with an IC50 = 59.9 and 73.02 µM on NINOA and INC-5 strain, respectively. An in silico analysis proposed compound T-085 as a potential TR inhibitor with better affinity than the natural substrate. Enzymatic analysis revealed that T-085 inhibits parasite TR non-competitively. Compound T-085 carries a carbonyl, a CF3, and an isopropyl carboxylate group at 2-, 3- and 7-position, respectively. These results suggest the chemical structure of this compound as a good starting point for the design and synthesis of novel trypanocidal derivatives with higher TR inhibitory potency and lower toxicity.
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