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Metabolomics in the fight against malaria

机译:代谢组学与疟疾的斗争

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摘要

Metabolomics uses high-resolution mass spectrometry to provide a chemical fingerprint of thousands of metabolites present in cells, tissues or body fluids. Such metabolic phenotyping has been successfully used to study various biologic processes and disease states. High-resolution metabolomics can shed new light on the intricacies of host-parasite interactions in each stage of the Plasmodium life cycle and the downstream ramifications on the host’s metabolism, pathogenesis and disease. Such data can become integrated with other large datasets generated using top-down systems biology approaches and be utilised by computational biologists to develop and enhance models of malaria pathogenesis relevant for identifying new drug targets or intervention strategies. Here, we focus on the promise of metabolomics to complement systems biology approaches in the quest for novel interventions in the fight against malaria. We introduce the Malaria Host-Pathogen Interaction Center (MaHPIC), a new systems biology research coalition. A primary goal of the MaHPIC is to generate systems biology datasets relating to human and non-human primate (NHP) malaria parasites and their hosts making these openly available from an online relational database. Metabolomic data from NHP infections and clinical malaria infections from around the world will comprise a unique global resource.
机译:代谢组学使用高分辨率质谱来提供细胞,组织或体液中存在的数千种代谢物的化学指纹。这种代谢表型已经成功地用于研究各种生物学过程和疾病状态。高分辨率代谢组学可以揭示疟原虫生命周期各个阶段中宿主与寄生虫相互作用的复杂性,以及宿主代谢,发病机理和疾病的下游后果。这样的数据可以与使用自上而下的系统生物学方法生成的其他大型数据集集成在一起,并被计算生物学家用来开发和增强与识别新药靶标或干预策略有关的疟疾发病机制模型。在这里,我们集中于代谢组学的希望,以补充系统生物学方法,以寻求抗击疟疾的新方法。我们介绍了疟疾宿主-病原体相互作用中心(MaHPIC),这是一个新的系统生物学研究联盟。 MaHPIC的主要目标是生成与人类和非人类灵长类(NHP)疟疾寄生虫及其寄主有关的系统生物学数据集,以便从在线关系数据库中公开获取这些信息。来自世界各地的NHP感染和临床疟疾感染的代谢组学数据将构成独特的全球资源。

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