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Dominant components of the Thoroughbred metabolome characterised by1H-nuclear magnetic resonance spectroscopy: A metabolite atlas of common biofluids

机译:纯种代谢物的主导组分特征在于1H-核磁共振光谱:普通生物流体的代谢物地图集

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摘要

REASONS FOR PERFORMING STUDY: Metabonomics is emerging as a powerful tool for disease screening and investigating mammalian metabolism. This study aims to create a metabolic framework by producing a preliminary reference guide for the normal equine metabolic milieu. OBJECTIVES: To metabolically profile plasma, urine and faecal water from healthy racehorses using high resolution (1) H-nuclear magnetic resonance (NMR) spectroscopy and to provide a list of dominant metabolites present in each biofluid for the benefit of future research in this area. STUDY DESIGN: This study was performed using 7 Thoroughbreds in race training at a single time point. Urine and faecal samples were collected noninvasively and plasma was obtained from samples taken for routine clinical chemistry purposes. METHODS: Biofluids were analysed using (1) H-NMR spectroscopy. Metabolite assignment was achieved via a range of one- and 2-dimensional experiments. RESULTS: A total of 102 metabolites were assigned across the 3 biological matrices. A core metabonome of 14 metabolites was ubiquitous across all biofluids. All biological matrices provided a unique window on different aspects of systematic metabolism. Urine was the most populated metabolite matrix with 65 identified metabolites, 39 of which were unique to this biological compartment. A number of these were related to gut microbial host cometabolism. Faecal samples were the most metabolically variable between animals; acetate was responsible for the majority (28%) of this variation. Short-chain fatty acids were the predominant features identified within this biofluid by (1) H-NMR spectroscopy. CONCLUSIONS: Metabonomics provides a platform for investigating complex and dynamic interactions between the host and its consortium of gut microbes and has the potential to uncover markers for health and disease in a variety of biofluids. Inherent variation in faecal extracts along with the relative abundance of microbial-mammalian metabolites in urine and invasive nature of plasma sampling, infers that urine is the most appropriate biofluid for the purposes of metabonomic analysis.
机译:于执行研究理由:代谢组学正在成为疾病筛查的有力工具和调查哺乳动物代谢。这项研究的目的是通过对生产正常的马代谢环境初步的参考指南,以创建一个代谢框架。目的:代谢轮廓血浆,尿液和粪便水利用高分辨率健康赛马(1)H核磁共振(NMR)光谱,并提供主要的代谢产物的列表存在于每个生物液体为今后的研究在这方面的好处。研究设计:采用7只纯种在比赛中训练,在单一时间点进行了这项研究。尿液和粪便样品,非侵入性地收集并从取用于常规临床化学目的样品中获得的血浆。方法:使用(1)H-NMR谱生物流体进行分析。代谢物分配经由一系列一维和两维实验实现。结果:总共102种代谢物在3个生物基质被分配。的14种代谢物核心代谢组是所有生物体液中无处不在。所有的生物基质上系统代谢的不同方面提供了一个独特的窗口。尿呈65周鉴定的代谢,其中39所特有的这种生物舱上人口最代谢矩阵。肠道微生物主机共代谢许多这些都是相关的。粪便样品动物之间最代谢变量;醋酸负责这种变形的大部分(28%)。短链脂肪酸是主要的特征:(1)H-NMR光谱法鉴定该生物流体中。结论:代谢组学提供了调查主机及其肠道微生物的财团之间的复杂和动态交互的平台,具有在各种生物液体的揭开标志物健康和疾病的可能性。在粪便提取物固有变化与相对丰度在尿微生物哺乳动物代谢物和血浆取样的侵入性,推断的尿液是用于代谢组学分析的目的最合适的生物流体沿。

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