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Fundamentals of Mass Spectrometry-Based Metabolomics

机译:基于质谱的代谢组学的基础

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Metabolomics involves the study of a complex and diverse array of compounds that can be thought of as the ultimate end products of the complex systems that are characteristic of molecular biology. The compounds that constitute the metabolome are small in size relative to the genome and proteome and include amino acids, carbohydrates, organic acids, lipids, and nucleotides with a mass less than 1800 Da. Understanding the role of these metabolites and the way in which changes in these important molecules impact biological processes has great potential to improve public health through better understanding of disease mechanisms. A comprehensive understanding of the metabolome will ultimately lead to better candidate biomarkers and drug targets enabling improvements in patient care. Metabolomics experiments can be divided primarily into two experimental strategies: targeted and untargeted. This monograph details these two approaches and the specific considerations for sample preparation, analytical separations, instrumental considerations, and data analysis that are required in the practice of these important technologies. Furthermore, selected applications of targeted and untargeted experiments are showcased to demonstrate the role of metabolomics as part of multi-omics studies and how metabolites can be spatially mapped in biological systems using imaging mass spectrometry.
机译:代谢组合涉及一种复杂和多样化的化合物,可以被认为是作为分子生物学特征的复杂系统的最终末端产物。构成代谢物的化合物的尺寸相对于基因组和蛋白质组很小,并且包括氨基酸,碳水化合物,有机酸,脂质和质量小于1800da的核苷酸。了解这些代谢物的作用以及这些重要分子影响的改变通过更好地了解疾病机制,影响生物过程的潜力很大。全面了解代谢物最终会导致更好的候选生物标志物和药物目标,从而能够改善患者护理。代谢组科实验可以主要分为两种实验策略:有针对性的和未确定的。本专着详细说明了这两种方法以及这些重要技术实践中所需的样品制备,分析分离,仪器考虑和数据分析的具体注意事项。此外,展示了靶向和未确定的实验的选定应用,以证明代谢组的作用作为多OMICS研究的一部分以及代谢物在使用成像质谱法中如何在生物系统中进行空间地映射。

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