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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >~1H NMR-based metabonomic applications to decipher gut microbial metabolic influence on mammalian health
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~1H NMR-based metabonomic applications to decipher gut microbial metabolic influence on mammalian health

机译:基于〜1H NMR的代谢组学应用来解释肠道微生物代谢对哺乳动物健康的影响

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摘要

Recent advances in molecular biology and microbiology have increased awareness on the importance of the gut microbiota to the overall mammalian host's health status. There is therefore increasing interest in nutrition research to characterise the molecular foundations of the gut microbial mammalian crosstalk at both physiological and biochemical pathway levels. Tackling these challenges can be achieved through systems biology strategies based on the measurement of metabolites to assess the highly complex metabolic exchanges between diverse biological compartments, including organs, biofluids and microbial symbionts. By opening a direct biochemical window into the metabolome, metabonomics is uniquely suited for the identification of biomarkers providing better understanding of these complex metabolic processes. Recent applications of top-down system biology based on ~1H NMR spectroscopy coupled to advanced chemometric modelling approaches provided compelling evidence that system-wide and organ-specific changes in biochemical processes may be finely tuned by gut microbial activities. This review aims at describing current advances in NMR-based metabonomics where the main objective is to discern the molecular pathways and biochemical mechanisms under the influence of the gut microbiota. Furthermore, emphasis is given on nutritional approaches, where the quest for homeostatic balance is dependent not only on the host but also on the nutritional modulation of the gut microbiota-host metabolic interactions, using, for instance, probiotics and prebiotics.
机译:分子生物学和微生物学的最新进展提高了人们对肠道菌群对整个哺乳动物宿主健康状况的重要性的认识。因此,对于营养研究越来越感兴趣,以在生理和生化途径水平上表征肠道微生物哺乳动物串扰的分子基础。通过基于代谢物测量的系统生物学策略来评估这些挑战,以评估包括器官,生物流体和微生物共生体在内的各种生物区室之间的高度复杂的代谢交换。通过在代谢组学中打开直接的生化窗口,代谢组学特别适用于鉴定生物标志物,从而更好地了解这些复杂的代谢过程。基于〜1H NMR光谱的自上而下的系统生物学的最新应用与先进的化学计量学方法相结合,提供了令人信服的证据,表明肠道微生物的活动可以对生物化学过程中全系统和器官特定的变化进行微调。这篇综述旨在描述基于NMR的代谢组学的最新进展,其主要目标是辨别肠道菌群影响下的分子途径和生化机制。此外,重点在于营养方法,其中寻求稳态平衡的方法不仅取决于宿主,还取决于肠道微生物群与宿主代谢相互作用的营养调节,例如使用益生菌和益生元。

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