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High-Throughput Metabolomics by 1D NMR

机译:1D NMR的高通量代谢组学

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Metabolomics deals with the whole ensemble of metabolites (the metabolome). As one of the -omic sciences, it relates to biology, physiology, pathology and medicine; but metabolites are chemical entities, small organic molecules or inorganic ions. Therefore, their proper identification and quantitation in complex biological matrices requires a solid chemical ground. With respect to for example, DNA, metabolites are much more prone to oxidation or enzymatic degradation: we can reconstruct large parts of a mammoth's genome from a small specimen, but we are unable to do the same with its metabolome, which was probably largely degraded a few hours after the animal's death. Thus, we need standard operating procedures, good chemical skills in sample preparation for storage and subsequent analysis, accurate analytical procedures, a broad knowledge of chemometrics and advanced statistical tools, and a good knowledge of at least one of the two metabolomic techniques, MS or NMR. All these skills are traditionally cultivated by chemists. Here we focus on metabolomics from the chemical standpoint and restrict ourselves to NMR. From the analytical point of view, NMR has pros and cons but does provide a peculiar holistic perspective that may speak for its future adoption as a population-wide health screening technique.
机译:代谢组种涉及代谢物的整个集合(代谢物)。作为其中一种科学之一,它涉及生物学,生理学,病理和医学;但代谢物是化学实体,小有机分子或无机离子。因此,复杂生物基质中的正确鉴定和定量需要固体化学物质。关于例如,DNA,代谢物更容易易于氧化或酶促降解:我们可以从小样本中重建大部分Mammoth基因组,但我们不能与其代谢物相同,这可能在很大降级动物死后几个小时。因此,我们需要标准操作程序,良好的化学技能,在样品制备中进行储存和随后的分析,准确的分析程序,广泛了解化学计量学和高级统计工具,以及对两个代原型技术中的至少一个的良好知识,以及良好的两个代原型技术,MS或NMR。所有这些技能传统上由化学家培养。在这里,我们将重点关注化学立场的代谢组学,并将自己限制在核数。从分析的角度来看,NMR有利于利弊,但确实提供了一个特殊的整体视角,可能会使其未来采用作为人口宽的健康筛查技术。

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