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非靶向代谢组学揭示硝呋替莫和依氟鸟氨酸联用对布氏锥虫无协同作用。

Untargeted metabolomics reveals a lack of synergy between nifurtimox and eflornithine against Trypanosoma brucei.

机构信息

The Wellcome Trust Centre for Molecular Parasitology, Institute for Infection, Immunity and Inflammation, College of Medical, Veterinary and Life Sciences, University of Glasgow, Glasgow, United Kingdom.

出版信息

PLoS Negl Trop Dis. 2012;6(5):e1618. doi: 10.1371/journal.pntd.0001618. Epub 2012 May 1.

Abstract

A non-targeted metabolomics-based approach is presented that enables the study of pathways in response to drug action with the aim of defining the mode of action of trypanocides. Eflornithine, a polyamine pathway inhibitor, and nifurtimox, whose mode of action involves its metabolic activation, are currently used in combination as first line treatment against stage 2, CNS-involved, human African trypanosomiasis (HAT). Drug action was assessed using an LC-MS based non-targeted metabolomics approach. Eflornithine revealed the expected changes to the polyamine pathway as well as several unexpected changes that point to pathways and metabolites not previously described in bloodstream form trypanosomes, including a lack of arginase activity and N-acetylated ornithine and putrescine. Nifurtimox was shown to be converted to a trinitrile metabolite indicative of metabolic activation, as well as inducing changes in levels of metabolites involved in carbohydrate and nucleotide metabolism. However, eflornithine and nifurtimox failed to synergise anti-trypanosomal activity in vitro, and the metabolomic changes associated with the combination are the sum of those found in each monotherapy with no indication of additional effects. The study reveals how untargeted metabolomics can yield rapid information on drug targets that could be adapted to any pharmacological situation.

摘要

本文提出了一种非靶向代谢组学方法,可用于研究药物作用下的途径变化,从而确定杀利什曼原虫药物的作用模式。依氟鸟氨酸是一种多胺途径抑制剂,硝呋替莫的作用模式涉及到其代谢激活,两者目前联合用于治疗第二期伴有中枢神经系统(CNS)受累的非洲人类锥虫病(HAT)。采用基于 LC-MS 的非靶向代谢组学方法评估药物作用。依氟鸟氨酸显示出对多胺途径的预期变化,以及一些以前在血液阶段锥虫中未描述过的途径和代谢物的意外变化,包括缺乏精氨酸酶活性以及 N-乙酰化鸟氨酸和腐胺。硝呋替莫被证明可转化为表明代谢激活的三嗪代谢物,同时诱导参与碳水化合物和核苷酸代谢的代谢物水平发生变化。然而,依氟鸟氨酸和硝呋替莫在体外未能协同抗锥虫活性,并且与联合治疗相关的代谢变化是每种单药治疗中发现的变化的总和,没有表明有额外的作用。该研究揭示了非靶向代谢组学如何快速提供有关药物靶点的信息,这些信息可以适用于任何药理学情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31f7/3341325/82b1be2f0947/pntd.0001618.g001.jpg

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