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首页> 外文期刊>Current Protocols in Mouse Biology >Metabolic Profiling and Quantification of Neurotransmitters in Mouse Brain by Gas Chromatography-Mass Spectrometry
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Metabolic Profiling and Quantification of Neurotransmitters in Mouse Brain by Gas Chromatography-Mass Spectrometry

机译:气相色谱-质谱法对小鼠大脑中神经递质的代谢谱分析和定量

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Metabolites are key mediators of cellular functions, and have emerged as important modulators in a variety of diseases. Recent developments in translational biomedicine have highlighted the importance of not looking at just one disease marker or disease inducing molecule, but at populations thereof to gain a global understanding of cellular function in health and disease. The goal of metabolomics is the systematic identification and quantification of metabolite populations. One of the most pressing issues of our times is the understanding of normal and diseased nervous tissue functions. To ensure high quality data, proper sample processing is crucial. Here, we present a method for the extraction of metabolites from brain tissue, their subsequent preparation for non-targeted gas chromatography-mass spectrometry (GC-MS) measurement, as well as giving some guidelines for processing of raw data. In addition, we present a sensitive screening method for neurotransmitters based on GC-MS in selected ion monitoring mode. The precise multi-analyte detection and quantification of amino acid and monoamine neurotransmitters can be used for further studies such as metabolic modeling. Our protocol can be applied to shed light on nervous tissue function in health, as well as neurodegenerative disease mechanisms and the effect of experimental therapeutics at the metabolic level.
机译:代谢物是细胞功能的关键介质,并已成为多种疾病中的重要调节剂。转化生物医学的最新发展突显了不只看一种疾病标志物或疾病诱导分子,而是看其人群的重要性,以便对健康和疾病中的细胞功能有一个全面的了解。代谢组学的目标是对代谢物种群进行系统的鉴定和定量。我们时代最紧迫的问题之一是对正常和患病的神经组织功能的了解。为了确保高质量的数据,正确的样品处理至关重要。在这里,我们介绍了一种从脑组织中提取代谢物的方法,其用于非目标气相色谱-质谱(GC-MS)测量的后续制备,以及为原始数据处理提供了一些指导。此外,我们提出了一种基于GC-MS在选定离子监测模式下对神经递质的敏感筛选方法。氨基酸和单胺类神经递质的精确多分析物检测和定量可用于进一步研究,例如代谢建模。我们的方案可用于阐明健康中神经组织的功能,以及神经退行性疾病的机理和在代谢水平上实验性疗法的作用。

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