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缩小体内组学和体外组学之间的差距:使用质量保证/质量控制来加强离体 NMR 代谢组学。

Closing the gap between in vivo and in vitro omics: using QA/QC to strengthen ex vivo NMR metabolomics.

机构信息

Nebraska Center for Integrated Biomolecular Communication, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.

Department of Chemistry, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.

出版信息

NMR Biomed. 2023 Apr;36(4):e4594. doi: 10.1002/nbm.4594. Epub 2021 Aug 8.

Abstract

Metabolomics aims to achieve a global quantitation of the pool of metabolites within a biological system. Importantly, metabolite concentrations serve as a sensitive marker of both genomic and phenotypic changes in response to both internal and external stimuli. NMR spectroscopy greatly aids in the understanding of both in vitro and in vivo physiological systems and in the identification of diagnostic and therapeutic biomarkers. Accordingly, NMR is widely utilized in metabolomics and fluxomics studies due to its limited requirements for sample preparation and chromatography, its non-destructive and quantitative nature, its utility in the structural elucidation of unknown compounds, and, importantly, its versatility in the analysis of in vitro, in vivo, and ex vivo samples. This review provides an overview of the strengths and limitations of in vitro and in vivo experiments for translational research and discusses how ex vivo studies may overcome these weaknesses to facilitate the extrapolation of in vitro insights to an in vivo system. The application of NMR-based metabolomics to ex vivo samples, tissues, and biofluids can provide essential information that is close to a living system (in vivo) with sensitivity and resolution comparable to those of in vitro studies. The success of this extrapolation process is critically dependent on high-quality and reproducible data. Thus, the incorporation of robust quality assurance and quality control checks into the experimental design and execution of NMR-based metabolomics experiments will ensure the successful extrapolation of ex vivo studies to benefit translational medicine.

摘要

代谢组学旨在实现对生物系统内代谢物库的全面定量。重要的是,代谢物浓度可作为基因组和表型变化的敏感标志物,对内部和外部刺激均有反应。NMR 光谱极大地有助于理解体外和体内生理系统,并有助于鉴定诊断和治疗生物标志物。因此,由于其对样品制备和色谱的要求有限、具有非破坏性和定量性质、可用于鉴定未知化合物的结构,以及重要的是,其在分析体外、体内和离体样品方面的多功能性,NMR 在代谢组学和通量组学研究中得到了广泛应用。本文综述了体外和体内实验在转化研究中的优势和局限性,并讨论了离体研究如何克服这些局限性,以促进将体外研究结果外推至体内系统。基于 NMR 的代谢组学在离体样本、组织和生物流体中的应用可以提供接近活体系统(体内)的重要信息,其灵敏度和分辨率与体外研究相当。这种外推过程的成功高度依赖于高质量和可重复的数据。因此,将稳健的质量保证和质量控制检查纳入基于 NMR 的代谢组学实验的实验设计和执行中,将确保成功地将离体研究外推以有益于转化医学。

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