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Nutritional modulation of the metabonome: Applications of metabolic phenotyping in translational nutritional research

机译:元代谢组的营养调节:代谢表型在转化营养研究中的应用

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PURPOSE OF REVIEW: Metabolic profiling technologies provide a global overview of complex dietary processes. Metabonomic analytical approaches have now been translated into multiple areas of clinical nutritional research based on the widespread adoption of high-throughput mass spectrometry and proton nuclear magnetic resonance spectroscopy. This has generated novel insights into the molecular mechanisms that shape the microbiome-dietary-chronic disease axis. RECENT FINDINGS: Metabolome-wide association studies have created a new paradigm in nutritional molecular epidemiology and they have highlighted the importance of gut microbial cometabolic processes in the development of cardiovascular disease and diabetes. Targeted analyses are helping to explain the mechanisms by which high-risk diets (such as red meat) modulate disease risk and they are generating novel biomarkers that will serve to re-define how the efficacy of nutritional interventions is assessed. Nutritional metabonome-microbiome interactions have also been defined in extreme dietary states such as obesity and starvation, and they also serve as important models for understanding how the gut microbiome modifies disease risk. Finally, nutritional systems medicine approaches are creating novel insights into the functional components of our diet, and the mechanisms by which they cause disease. SUMMARY: Diet is an important modulator of the human metabolic phenotype and the analysis of the nutritional metabolome will drive future development of personalized nutritional interventions.
机译:审查目的:代谢概况分析技术提供了复杂饮食过程的全球概述。基于高通量质谱和质子核磁共振波谱的广泛采用,代谢组学分析方法现已转化为临床营养研究的多个领域。这对塑造微生物组-饮食-慢性疾病轴的分子机制产生了新见解。最近的发现:代谢组范围内的关联研究在营养分子流行病学中创造了一个新的范例,它们突出了肠道微生物的代谢过程在心血管疾病和糖尿病发展中的重要性。有针对性的分析有助于解释高风险饮食(例如红肉)调节疾病风险的机制,并且它们正在产生新颖的生物标志物,这些标志物将用于重新定义如何评估营养干预措施的功效。营养代谢组和微生物组之间的相互作用也已在极端饮食状态下定义,例如肥胖和饥饿,它们也作为了解肠道微生物组如何改变疾病风险的重要模型。最后,营养系统医学方法正在对我们饮食的功能成分以及它们引起疾病的机制产生新的见解。简介:饮食是人类代谢表型的重要调节剂,对营养代谢组的分析将推动个性化营养干预措施的未来发展。

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