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Procedure for tissue sample preparation and metabolite extraction for high-throughput targeted metabolomics

机译:高通量靶向代谢组学的组织样品制备和代谢物提取程序

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Reproducible quantification of metabolites in tissue samples is of high importance for characterization of animal models and identification of metabolic changes that occur in different tissue types in specific diseases. However, the extraction of metabolites from tissue is often the most labor-intensive and error-prone step in metabolomics studies. Here, we report the development of a standardized high-throughput method for rapid and reproducible extraction of metabolites from multiple tissue samples from different organs of several species. The method involves a bead-based homogenizer in combination with a simple extraction protocol and is compatible with state-of-the-art metabolomics kit technology for quantitative and targeted flow injection tandem mass spectrometry. We analyzed different extraction solvents for both reproducibility as well as suppression effects for a range of different animal tissue types including liver, kidney, muscle, brain, and fat tissue from mouse and bovine. In this study, we show that for most metabolites a simple methanolic extraction is best suited for reliable results. An additional extraction step with phosphate buffer can be used to improve the extraction yields for a few more polar metabolites. We provide a verified tissue extraction setup to be used with different indications. Our results demonstrate that this high-throughput procedure provides a basis for metabolomic assays with a wide spectrum of metabolites. The developed method can be used for tissue extraction setup for different indications like studies of metabolic syndrome, obesity, diabetes or cardiovascular disorders and nutrient transformation in livestock.
机译:组织样品中代谢物的可再现定量对于表征动物模型和鉴定在特定疾病中不同组织类型中发生的代谢变化非常重要。但是,从组织中提取代谢物通常是代谢组学研究中最费力且容易出错的步骤。在这里,我们报告了一种标准化的高通量方法的开发,该方法用于从多种物种的不同器官的多个组织样品中快速,可再现地提取代谢产物。该方法涉及与简单提取方案结合的基于珠子的均质器,并且与用于定量和靶向流动注射串联质谱的最新代谢组学试剂盒技术兼容。我们分析了不同提取溶剂的重现性以及对一系列不同动物组织类型(包括肝脏,肾脏,肌肉,大脑和小鼠和牛的脂肪组织)的抑制效果。在这项研究中,我们表明对于大多数代谢物而言,简单的甲醇萃取最适合获得可靠的结果。可以使用磷酸盐缓冲液进行额外的提取步骤,以提高更多极性代谢物的提取率。我们提供了经过验证的组织提取设置,可用于不同的适应症。我们的结果表明,这种高通量方法为具有广泛代谢物的代谢组学测定提供了基础。所开发的方法可用于不同适应症的组织提取设置,例如对代谢综合征,肥胖症,糖尿病或心血管疾病以及家畜营养转化的研究。

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