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Untargeted UPLC-MS Profiling Pipeline to Expand Tissue Metabolome Coverage: Application to Cardiovascular Disease

机译:无目标的UPLC-MS分析管道可扩展组织代谢组的覆盖范围:在心血管疾病中的应用

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Metabolic profiling studies aim to achieve broad metabolome coverage in specific biological samples. However, wide metabolome coverage has proven difficult to achieve, mostly because of the diverse physicochemical properties of small molecules, obligating analysts to seek multiplatform and multimethod approaches. Challenges are even greater when it comes to applications to tissue samples, where tissue lysis and metabolite extraction can induce significant systematic variation in composition. We have developed a pipeline for obtaining the aqueous and organic compounds from diseased arterial tissue using two consecutive extractions, followed by a different untargeted UPLC-MS analysis method for each extract. Methods were rationally chosen and optimized to address the different physicochemical properties of each extract: hydrophilic interaction liquid chromatography (HILIC) for the aqueous extract and reversed-phase chromatography for the organic. This pipeline can be generic for tissue analysis as demonstrated by applications to different tissue types. The experimental setup and fast turnaround time of the two methods contributed toward obtaining highly reproducible features with exceptional chromatographic performance (CV % < 0.5%), making this pipeline suitable for metabolic profiling applications. We structurally assigned 226 metabolites from a range of chemical classes (e.g., carnitines, alpha-amino acids, purines, pyrimidines, phospholipids, sphingolipids, free fatty acids, and glycerolipids) which were mapped to their corresponding pathways, biological functions and known disease mechanisms. The combination of the two untargeted UPLC-MS methods showed high metabolite complementarity. We demonstrate the application of this pipeline to cardiovascular disease, where we show that the analyzed diseased groups (n = 120) of arterial tissue could be distinguished based on their metabolic profiles.
机译:代谢谱分析研究旨在实现特定生物样品中广泛的代谢组覆盖。然而,已证明很难实现广泛的代谢组覆盖,这主要是由于小分子的多种理化特性,使分析人员不得不寻求多平台和多方法的方法。当应用于组织样本时,挑战更大,因为组织裂解和代谢产物的提取会导致成分发生明显的系统性变化。我们已经开发了一条管线,用于使用两次连续萃取从患病的动脉组织中获得水性和有机化合物,然后对每种萃取物采用不同的非靶向UPLC-MS分析方法。合理地选择和优化方法以解决每种提取物的不同理化特性:用于水提取物的亲水相互作用液相色谱(HILIC)和用于有机物的反相色谱。如对不同组织类型的应用所证明的,该管道对于组织分析可能是通用的。两种方法的实验设置和快速周转时间有助于获得具有出色色谱性能(CV%<0.5%)的高度可重现特征,从而使该管线适合于代谢谱分析应用。我们根据化学类别(例如肉碱,α-氨基酸,嘌呤,嘧啶,磷脂,鞘脂,游离脂肪酸和甘油脂)在结构上分配了226种代谢物,并将它们映射到其相应的途径,生物学功能和已知的疾病机理。两种非靶向UPLC-MS方法的组合显示出高代谢物互补性。我们证明了该管道在心血管疾病中的应用,在该研究中,我们可以根据其代谢谱来区分分析的患病动脉组(n = 120)。

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