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Silver Nanoparticles and Electroporation: Their Combinational Effect on Leishmania Major

机译:纳米银颗粒与电穿孔对大利什曼原虫的综合作用

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摘要

Leishmaniasis is an emerging and uncontrolled disease. The use of routine drugs has been limited due to proven side effects and drug resistance. Interestingly, novel approaches such as nanotechnology have been applied as a therapeutic modality. Silver nanoparticles have shown antileishmanial effects but because of their nonspecific and toxic effects on normal cells, their use has been limited. On the other hand, it has been demonstrated that electric pulses induce electropores on cell membranes resulting in higher entrance of certain molecules into cells. There is a hypothesis proposing that use of electroporation and silver nanoparticles simultaneously can induce greater accumulation of particles in infected cells, besides higher toxicity. In this study, after applying electric pulses with different concentrations of silver nanoparticles (SNPs), cell survival rate was determined by standard viability assays. On the basis of these data, 2 mu g/ml of SNPs and 700 V/cm with 100 mu s duration of electroporation were selected as the non-lethal condition. Promastigotes and infected macrophage cells received both treatments and the survival percentage and Infection Index were calculated. In parasites and cells receiving both treatments, higher toxicity was observed in comparison to each treatment given individually, showing a synergic effect on promastigotes. Therefore, application of electric pulses could overcome limitations in using the antileishmanial properties of silver nanoparticles. (C) 2015 Wiley Periodicals, Inc.
机译:利什曼病是一种新出现的、不受控制的疾病。由于已证实的副作用和耐药性,常规药物的使用受到限制。有趣的是,纳米技术等新方法已被用作一种治疗方式。银纳米颗粒已显示出抗利什曼原虫作用,但由于它们对正常细胞的非特异性和毒性作用,它们的使用受到限制。另一方面,已经证明电脉冲会在细胞膜上诱导电孔,导致某些分子更多地进入细胞。有一种假设提出,除了更高的毒性外,同时使用电穿孔和银纳米颗粒可以诱导受感染细胞中更大的颗粒积累。在这项研究中,在施加不同浓度的银纳米颗粒(SNP)的电脉冲后,通过标准活力测定确定细胞存活率。根据这些数据,选择2 μ g/ml的SNPs和700 V/cm和100 μ s的电穿孔时间作为非致死条件。前鞭毛体和感染的巨噬细胞接受两种治疗,并计算存活率和感染指数。在接受两种治疗的寄生虫和细胞中,与单独给予的每种治疗相比,观察到更高的毒性,显示出对前鞭毛体的协同作用。因此,电脉冲的应用可以克服利用银纳米颗粒抗利什曼原虫特性的局限性。(C) 2015 Wiley Periodicals, Inc.

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