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首页> 外文期刊>Parasitology >In vitro antileishmanial activity and iron superoxide dismutase inhibition of arylamine Mannich base derivatives
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In vitro antileishmanial activity and iron superoxide dismutase inhibition of arylamine Mannich base derivatives

机译:芳胺曼尼希碱衍生物的体外抗体癌症活性和铁超氧化铁歧化酶抑制作用

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摘要

Leishmaniasis is one of the world's most neglected diseases, and it has a worldwide prevalence of 12 million. There are no effective human vaccines for its prevention, and treatment is hampered by outdated drugs. Therefore, research aiming at the development of new therapeutic tools to fight leishmaniasis remains a crucial goal today. With this purpose in mind, we present 20 arylaminoketone derivatives with a very interesting in vitro and in vivo efficacy against Trypanosoma cruzi that have now been studied against promastigote and amastigote forms of Leishmania infantum, Leishmania donovani and Leishmania braziliensis strains. Six out of the 20 Mannich base-type derivatives showed Selectivity Index between 39 and 2337 times higher in the amastigote form than the reference drug glucantime. These six derivatives affected the parasite infectivity rates; the result was lower parasite infectivity rates than glucantime tested at an IC25 dose. In addition, these derivatives were substantially more active against the three Leishmania species tested than glucantime. The mechanism of action of these compounds has been studied, showing a greater alteration in glucose catabolism and leading to greater levels of iron superoxide dismutase inhibition. These molecules could be potential candidates for leishmaniasis chemotherapy.
机译:Leishmaniaisis是世界上最忽视的疾病之一,它的全球普遍存在1200万。预防没有有效的人类疫苗,治疗受到过时的药物的阻碍。因此,旨在开发新的治疗工具来对抗Leishmaniaisis的研究仍然是今天至关重要的目标。为此目的,我们介绍了20个芳素酮衍生物,体外具有非常有趣的衍生物和体内疗效,目前正在研究初级幼稚园,Leishmania Donovani和Leishmania Braziliensis菌株的Prelyigote和Amastigote形式。 20个曼尼希碱型衍生物中的六个显示的选择性指数比参考药物葡萄糖术中的Amastigotoot形式高出39%至2337倍。这六种衍生物影响了寄生虫感染率;结果比在IC25剂量测试的葡糖糖酮率低的寄生虫感染率。此外,这些衍生物对比富富葡甘油的三种LeishMania物种显着更活跃。研究了这些化合物的作用机制,显示出葡萄糖分解代谢的更大改变,导致更大水平的铁超氧歧化酶抑制。这些分子可能是Leishmaniaisis化疗的潜在候选者。

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