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Nanoparticle-mediated magnetic hyperthermia is an effective method for killing the human-infective protozoan parasite Leishmania mexicana in vitro

机译:纳米介导的磁热疗是一种有效的体外杀伤人类感染原生动物寄生虫的墨西哥利什曼原虫的方法

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摘要

Cutaneous leishmaniasis is a neglected tropical disease characterized by disfiguring skin lesions. Current chemotherapeutic options depend on toxic, expensive drugs that are both difficult to administer and becoming less effective due to increasing levels of resistance. In comparison, thermotherapy displays greater patient compliance and less adverse systemic effects, but there are still significant issues associated with this. The procedure is painful, requiring local anaesthetic, and is less effective against large lesions. Using nanoparticles to controllably generate heat in a localized manner may provide an alternative solution. Here we evaluate magnetic hyperthermia, using iron oxide magnetic nanoparticles, as a localized, heat-based method to kill the human-infective parasite in vitro. We assessed the effectiveness of this method against the differentiated, amastigote form of the parasite using three distinct viability assays: PrestoBlue, Live/Dead stain and a novel luciferase-based assay. Changes in amastigote morphology and ultrastructure were assessed by immunofluorescence, scanning and transmission electron microscopy. Our findings show that magnetic hyperthermia is an effective method to kill host-infective amastigotes, with morphological changes consistent with heat treatment. This method has the potential to be a step-change for research into new therapeutic options that moves away from the expensive chemotherapeutics currently dominating the research climate.
机译:皮肤利什曼病是一种被忽视的热带病,其特征是皮肤损伤。当前的化疗选择取决于有毒,昂贵的药物,这些药物既难以给药,又由于耐药水平的提高而变得无效。相比之下,热疗显示出更高的患者依从性,并减少了不利的全身影响,但是与此相关的还有很多重大问题。该过程是痛苦的,需要局部麻醉,并且对大的病变效果较差。使用纳米颗粒以局部方式可控制地产生热量可以提供替代解决方案。在这里,我们评估使用氧化铁磁性纳米粒子的磁热疗方法,作为一种局部的基于热的方法,以在体外杀死人类感染性寄生虫。我们使用三种不同的活力检测方法:PrestoBlue,Live / Dead染色和新型的基于荧光素酶的检测方法,评估了该方法针对已分化的寄生虫形式的寄生虫的有效性。通过免疫荧光,扫描和透射电子显微镜评估了鞭毛体形态和超微结构的变化。我们的发现表明,磁疗是杀死宿主感染性变形虫的有效方法,其形态变化与热处理一致。这种方法有可能成为研究新的治疗选择的阶梯式方法,从而摆脱目前主导研究环境的昂贵化学疗法。

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