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Metabolomic Method: UPLC-q-ToF Polar and Non-Polar Metabolites in the Healthy Rat Cerebellum Using an In-Vial Dual Extraction

机译:代谢组学方法:小瓶内双萃取法在健康大鼠小脑中的UPLC-q-ToF极性和非极性代谢物

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摘要

Unbiased metabolomic analysis of biological samples is a powerful and increasingly commonly utilised tool, especially for the analysis of bio-fluids to identify candidate biomarkers. To date however only a small number of metabolomic studies have been applied to studying the metabolite composition of tissue samples, this is due, in part to a number of technical challenges including scarcity of material and difficulty in extracting metabolites. The aim of this study was to develop a method for maximising the biological information obtained from small tissue samples by optimising sample preparation, LC-MS analysis and metabolite identification. Here we describe an in-vial dual extraction (IVDE) method, with reversed phase and hydrophilic liquid interaction chromatography (HILIC) which reproducibly measured over 4,000 metabolite features from as little as 3mg of brain tissue. The aqueous phase was analysed in positive and negative modes following HILIC separation in which 2,838 metabolite features were consistently measured including amino acids, sugars and purine bases. The non-aqueous phase was also analysed in positive and negative modes following reversed phase separation gradients respectively from which 1,183 metabolite features were consistently measured representing metabolites such as phosphatidylcholines, sphingolipids and triacylglycerides. The described metabolomics method includes a database for 200 metabolites, retention time, mass and relative intensity, and presents the basal metabolite composition for brain tissue in the healthy rat cerebellum.
机译:生物样品的无偏代谢组学分析是一种功能强大且越来越常用的工具,尤其是在分析生物流体以识别候选生物标记物时。然而,迄今为止,仅少量的代谢组学研究被用于研究组织样品的代谢物组成,这部分是由于许多技术挑战,包括材料的缺乏和提取代谢物的困难。这项研究的目的是开发一种通过优化样品制备,LC-MS分析和代谢物鉴定来最大化从小组织样品中获得的生物学信息的方法。在这里,我们描述了一种小瓶双重提取(IVDE)方法,具有反相和亲水性液体相互作用色谱法(HILIC),可重现性地从3mg的脑组织中测量4,000多种代谢产物。 HILIC分离后,以正和负模式分析水相,其中一致地测量了2838种代谢物特征,包括氨基酸,糖和嘌呤碱。还分别按照反相分离梯度在正和负模式下分析了非水相,从该相中分别测量了1,183个代谢物特征,这些代谢物代表了诸如磷脂酰胆碱,鞘脂和三酰基甘油酯的代谢物。所描述的代谢组学方法包括一个包含200种代谢物,保留时间,质量和相对强度的数据库,并介绍了健康大鼠小脑中脑组织的基础代谢物组成。

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