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4-Amino Bis-Pyridinium Derivatives as Novel Antileishmanial Agents

机译:4-氨基双吡啶衍生物作为新型抗leishmanial代理

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摘要

The antileishmanial activity of a series of bis-pyridinium derivatives that are analogues of pentamidine have been investigated, and all compounds assayed were found to display activity against promastigotes and intracellular amastigotes of Leishmania donovani and Leishmania major, with 50% effective concentrations (EC50s) lower than 1 μM in most cases. The majority of compounds showed similar behavior in both Leishmania species, being slightly more active against L. major amastigotes. However, compound VGP-106 {1,1′-(biphenyl-4,4′-diylmethylene)bis[4-(4-bromo-N-methylanilino)pyridinium] dibromide} exhibited significantly higher activity against L. donovani amastigotes (EC50, 0.86 ± 0.46 μM) with a lower toxicity in THP-1 cells (EC50, 206.54 ± 9.89 μM). As such, VGP-106 was chosen as a representative compound to further elucidate the mode of action of this family of inhibitors in promastigote forms of L. donovani. We have determined that uptake of VGP-106 in Leishmania is a temperature-independent process, suggesting that the compound crosses the parasite membrane by diffusion. Transmission electron microscopy analysis showed a severe mitochondrial swelling in parasites treated with compound VGP-106, which induces hyperpolarization of the mitochondrial membrane potential and a significant decrease of intracellular free ATP levels due to the inhibition of ATP synthesis. Additionally, we have confirmed that VGP-106 induces mitochondrial ROS production and an increase in intracellular Ca2+ levels. All these molecular events can activate the apoptotic process in Leishmania; however, propidium iodide assays gave no indication of DNA fragmentation. These results underline the potency of compound VGP-106, which may represent a new avenue for the development of novel antileishmanial compounds.
机译:已研究了一系列与喷他idine类似的双吡啶鎓衍生物的抗排虫活性,发现所有测定的化合物均对多杀利什曼原虫和大利什曼原虫的前鞭毛体和胞内变形虫具有活性,有效浓度(EC50s)低50%在大多数情况下大于1μM。大多数化合物在两种利什曼原虫物种中都表现出相似的行为,对主要的羊膜鞭毛虫的活性稍强。但是,化合物VGP-106 {1,1'-(联苯-4,4'-二甲基亚甲基)双[4-(4-溴-N-甲基苯胺基)吡啶鎓]二溴化物}显示出对多诺氏乳杆菌(EC50 (0.86±0.46μM),在THP-1细胞中毒性较低(EC50,206.54±9.89μM)。因此,选择VGP-106作为代表化合物以进一步阐明多诺尼乳杆菌的前鞭毛体形式的该抑制剂家族的作用方式。我们已经确定利什曼原虫对VGP-106的吸收是一个与温度无关的过程,表明该化合物通过扩散穿过寄生虫膜。透射电子显微镜分析显示,用化合物VGP-106处理的寄生虫中线粒体严重肿胀,这会诱导线粒体膜电位超极化,并由于抑制ATP合成而显着降低细胞内游离ATP水平。此外,我们已经证实VGP-106诱导线粒体ROS的产生并增加细胞内Ca 2 + 的水平。所有这些分子事件均可激活利什曼原虫的凋亡过程。然而,碘化丙啶测定没有显示DNA片段化的迹象。这些结果强调了化合物VGP-106的效力,这可能代表了开发新的抗疟疾化合物的新途径。

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