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首页> 外文期刊>Analytical and bioanalytical chemistry >Multi-analytical platform metabolomic approach to study miltefosine mechanism of action and resistance in Leishmania
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Multi-analytical platform metabolomic approach to study miltefosine mechanism of action and resistance in Leishmania

机译:多分析平台代谢组学方法研究利什曼原虫的miltefosine作用和抵抗机制

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摘要

Miltefosine (MT) (hexadecylphosphocholine) was implemented to cope with resistance against antimonials, the classical treatment in Leishmaniasis. Given the scarcity of anti- Leishmania (L) drugs and the increasing appearance of resistance, there is an obvious need for understanding the mechanism of action and development of such resistance. Metabolomics is an increasingly popular tool in the life sciences due to it being a relatively fast and accurate technique that can be applied either with a particular focus or in a global manner to reveal new knowledge about biological systems. Three analytical platforms, gas chromatography (GC), liquid chromatography (LC) and capillary electrophoresis (CE) have been coupled to mass spectrometry (MS) to obtain a broad picture ofmetabolic changes in the parasite. Impairment of the polyamine metabolism from arginine (Arg) to trypanothione in susceptible parasites treated with MT was in some way expected, considering the reactive oxygen species (ROS) production described forMT. Importantly, in resistant parasites an increase in the levels of amino acids was the most outstanding feature, probably related to the adaptation of the resistant strain for its survival inside the parasitophorous vacuole.
机译:实施Miltefosine(MT)(十六烷基磷酸胆碱)以应对对利什曼病的经典治疗药抗药性。鉴于抗利什曼原虫(L)药物的稀缺性以及耐药性出现的增加,显然需要了解这种耐药性的作用机理和发展。代谢组学是生命科学中越来越流行的工具,因为它是一种相对快速,准确的技术,可以特别关注或以全局方式应用以揭示有关生物系统的新知识。气相色谱(GC),液相色谱(LC)和毛细管电泳(CE)这三种分析平台已与质谱(MS)结合使用,从而获得了该寄生虫代谢变化的宽广图像。考虑到MT所描述的活性氧(ROS)的产生,在某种程度上预期了用MT处理的易感寄生虫中精氨酸(Arg)到锥虫硫酮中多胺代谢的损害。重要的是,在抗性寄生虫中,氨基酸水平的增加是最突出的特征,可能与抗性菌株适应其在寄生虫液泡中的存活有关。

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