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具有抗利什曼原虫活性的新型亚氨基二苄基衍生物。

New iminodibenzyl derivatives with anti-leishmanial activity.

作者信息

Arndt Anderson, Liria Cleber Wanderlei, Yokoyama-Yasunaka Jenicer K U, Machini M Terêsa, Uliana Sílvia Reni Bortolin, Espósito Breno Pannia

机构信息

Department of Fundamental Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, 05508-000 São Paulo, SP, Brazil.

Department of Biochemistry, Institute of Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, 05508-000 São Paulo, SP, Brazil.

出版信息

J Inorg Biochem. 2017 Jul;172:9-15. doi: 10.1016/j.jinorgbio.2017.04.004. Epub 2017 Apr 4.

Abstract

Leishmaniasis is an infection caused by protozoa of the genus Leishmania and transmitted by sandflies. Current treatments are expensive and time-consuming, involving Sb(V)-based compounds, lipossomal amphotericin B and miltefosine. Recent studies suggest that inhibition of trypanothione reductase (TR) could be a specific target in the development of new drugs because it is essential and exclusive to trypanosomatids. This work presents the synthesis and characterization of new iminodibenzyl derivatives (dado) with ethylenediamine (ea), ethanolamine (en) and diethylenetriamine (dien) and their copper(II) complexes. Computational methods indicated that the complexes were highly lipophilic. Pro-oxidant activity assays by oxidation of the dihydrorhodamine (DHR) fluorimetric probe showed that [Cu(dado-ea)] has the highest rate of oxidation, independent of HO concentration. The toxicity to L. amazonensis promastigotes and RAW 264,7 macrophages was assessed, showing that dado-en was the most active new compound. Complexation to copper did not have an appreciable effect on the toxicity of the compounds.

摘要

利什曼病是由利什曼原虫属的原生动物引起的一种感染,通过白蛉传播。目前的治疗方法昂贵且耗时,包括基于Sb(V)的化合物、脂质体两性霉素B和米替福新。最近的研究表明,抑制锥虫硫醇还原酶(TR)可能是新药开发的一个特定靶点,因为它对锥虫是必需且独有的。这项工作展示了用乙二胺(ea),乙醇胺(en)和二亚乙基三胺(dien)合成并表征新型亚氨基二苄基衍生物(dado)及其铜(II)配合物。计算方法表明这些配合物具有高度的亲脂性。通过二氢罗丹明(DHR)荧光探针氧化进行的促氧化活性测定表明,[Cu(dado-ea)]具有最高的氧化速率,且与HO浓度无关。评估了对亚马逊利什曼原虫前鞭毛体和RAW 264,7巨噬细胞的毒性,结果表明dado-en是最具活性的新化合物。与铜形成配合物对化合物的毒性没有明显影响。

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