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喹啉腙杂化物的合成、抗利什曼原虫、抗锥虫及细胞毒性活性

Synthesis, leishmanicidal, trypanocidal and cytotoxic activity of quinoline-hydrazone hybrids.

作者信息

Coa Juan Carlos, Castrillón Wilson, Cardona Wilson, Carda Miguel, Ospina Victoria, Muñoz July Andrea, Vélez Iván D, Robledo Sara M

机构信息

Chemistry of Colombian Plants, Institute of Chemistry, Exact and Natural Sciences School, University of Antioquia-UdeA, Calle 70 No. 52-21, A.A 1226 Medellín, Colombia.

Department of Inorganic and Organic Chemistry, Jaume I University, E-12071 Castellón, Spain.

出版信息

Eur J Med Chem. 2015 Aug 28;101:746-53. doi: 10.1016/j.ejmech.2015.07.018. Epub 2015 Jul 13.

Abstract

Cutaneous leishmaniasis and Chagas disease are vector-borne parasitic disease causing serious risks to million people living in poverty-stricken areas. Both diseases are a major health problem in Latin America, and currently drugs for the effective treatment of these diseases have important concerns related with efficacy or toxicity than need to be addressed. We report herein the synthesis and biological activities (cytotoxicity, leishmanicidal and trypanocidal activities) of ten quinolone-hydrazone hybrids. The structure of the products was elucidated by spectrometric analyses. The synthesized compounds were evaluated against amastigotes forms of L. (V) panamensis which is the most prevalent Leishmania species in Colombia and Trypanosoma cruzi that is the major pathogenic species to humans; in turn, cytotoxicity was evaluated against human U-937 macrophages. Compounds 6b, 6c and 8 showed activity against L. (V) panamensis with EC50 of 6.5 ± 0.8 μg/mL (21.2 μM), 0.8 ± 0.0 μg/mL (2.6 μM) and 3.4 ± 0.6 μg/mL (11.1 μM), respectively, while compounds 6a and 6c had activity against T. cruzi. with EC50 values of 1.4 ± 0.3 μg/mL (4.8 μM) and 6.6 ± 0.3 μg/mL (4.6 μM), respectively. Even compound 6a showed better activity against T. cruzi than the standard drug benznidazole with EC50 = 10.5 ± 1.8 μg/mL (40.3 μM). Analysis of the results obtained against leishmaniasis indicates that antiparasite activity is related to the presence of 2-substituted quinoline (isoquinolinic core) and the hydroxyl group in positions 3 and 4 of the aromatic ring. Although the majority of these compounds were highly cytotoxic, the antiparasite activity was higher than cytotoxicity and therefore, they still have potential to be considered as hit molecules for leishmanicidal and trypanocidal drug development.

摘要

皮肤利什曼病和恰加斯病是由媒介传播的寄生虫病,对生活在贫困地区的数百万人构成严重风险。这两种疾病都是拉丁美洲的主要健康问题,目前用于有效治疗这些疾病的药物在疗效或毒性方面存在重要问题需要解决。我们在此报告了十种喹诺酮腙杂化物的合成及其生物活性(细胞毒性、杀利什曼原虫和杀锥虫活性)。通过光谱分析阐明了产物的结构。对合成化合物针对哥伦比亚最常见的利什曼原虫物种巴拿马利什曼原虫(L. (V) panamensis)的无鞭毛体形式以及对人类主要致病物种克氏锥虫(Trypanosoma cruzi)进行了评估;反过来,针对人U-937巨噬细胞评估了细胞毒性。化合物6b、6c和8对巴拿马利什曼原虫表现出活性,其EC50分别为6.5±0.8μg/mL(21.2μM)、0.8±0.0μg/mL(2.6μM)和3.4±0.6μg/mL(11.1μM),而化合物6a和6c对克氏锥虫有活性,其EC50值分别为1.4±0.3μg/mL(4.8μM)和6.6±0.3μg/mL(4.6μM)。甚至化合物6a对克氏锥虫的活性比标准药物苄硝唑更好,苄硝唑的EC50 = 10.5±1.8μg/mL(40.3μM)。对利什曼病所得结果的分析表明,抗寄生虫活性与2-取代喹啉(异喹啉核心)的存在以及芳环3位和4位的羟基有关。尽管这些化合物中的大多数具有高度细胞毒性,但抗寄生虫活性高于细胞毒性,因此,它们仍有潜力被视为用于杀利什曼原虫和杀锥虫药物开发的先导分子。

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