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代谢组学:迈向宿主-微生物相互作用的理解。

Metabolomics: towards understanding host-microbe interactions.

机构信息

University of Victoria - Genome BC Proteomics Centre, 3101-4464 Markham Street, Victoria, BC, V8Z 7X8, Canada.

出版信息

Future Microbiol. 2010 Feb;5(2):153-61. doi: 10.2217/fmb.09.132.

Abstract

Metabolomics employs an array of analytical techniques, including high-resolution nuclear magnetic resonance spectroscopy and mass spectrometry, to simultaneously analyze hundreds to thousands of small-molecule metabolites in biological samples. In conjunction with chemoinformatics and bioinformatics tools, metabolomics enables comprehensive characterization of the metabolic phenotypes (metabotypes) of the human, and other mammalian, hosts that have co-evolved with a large number of diverse commensal microbes, especially in the intestinal tract. Correlation of the metabotypes with the microbial profiles derived from culture-independent molecular techniques is increasingly helping to decipher inherent and intimate host-microbe relationships. This integrated, systems biology approach is improving our understanding of the molecular mechanisms underlying multilevel host-microbe interactions, and promises to elucidate the etiologies of human disorders resulting from unfavorable human-microbial associations, including enteric infections.

摘要

代谢组学采用了一系列分析技术,包括高分辨率核磁共振波谱和质谱,可同时分析生物样本中数百到数千种小分子代谢物。结合化学生物信息学和生物信息学工具,代谢组学可以全面描述与大量不同共生微生物共同进化的人类和其他哺乳动物宿主的代谢表型(代谢型),特别是在肠道中。将代谢型与从非培养的分子技术中获得的微生物特征相关联,越来越有助于揭示内在和密切的宿主-微生物关系。这种综合的系统生物学方法提高了我们对多层次宿主-微生物相互作用的分子机制的理解,并有望阐明由不利的人类-微生物关联引起的人类疾病的病因,包括肠道感染。

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