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METABOLOMICS FOR INVESTIGATING PHYSIOLOGICAL AND PATHOPHYSIOLOGICAL PROCESSES

机译:用于研究生理和病理生理过程的代谢组学

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摘要

Metabolomics uses advanced analytical chemistry techniques to enable the high-throughput characterization of metabolites from cells, organs, tissues, or biofluids. The rapid growth in metabolomics is leading to a renewed interest in metabolism and the role that small molecule metabolites play in many biological processes. As a result, traditional views of metabolites as being simply the "bricks and mortar" of cells or just the fuel for cellular energetics are being upended. Indeed, metabolites appear to have much more varied and far more important roles as signaling molecules, immune modulators, endogenous toxins, and environmental sensors. This review explores how metabolomics is yielding important new insights into a number of important biological and physiological processes. In particular, a major focus is on illustrating how metabolomics and discoveries made through metabolomics are improving our understanding of both normal physiology and the pathophysiology of many diseases. These discoveries are yielding new insights into how metabolites influence organ function, immune function, nutrient sensing, and gut physiology. Collectively, this work is leading to a much more unified and system-wide perspective of biology wherein metabolites, proteins, and genes are understood to interact synergistically to modify the actions and functions of organelles, organs, and organisms.
机译:代谢组学使用先进的分析化学技术来实现来自细胞,器官,组织或生物流体的代谢物的高通量表征。代谢组科的快速增长导致新陈代谢的重新感兴趣以及小分子代谢物在许多生物过程中发挥的作用。结果,代谢物的传统观点是仅仅是细胞的“砖头和砂浆”或仅仅是蜂窝能量燃料的观点。实际上,代谢产物似乎具有更大的变化和更重要的作用,作为信号分子,免疫调节剂,内源性毒素和环境传感器。该审查探讨了代谢组科对许多重要生物和生理过程产生重要的新见解。特别是,主要重点是说明通过代谢组科的代谢组和发现是如何改善我们对正常生理学和许多疾病病理生理学的理解。这些发现产生了新的见解,以代谢物如何影响器官功能,免疫功能,营养感应和肠道生理学。统称,这项工作导致生物学的更统一和系统范围的透视,其中代谢物,蛋白质和基因被理解为协同互动,以改变细胞器,器官和生物的作用和功能。

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