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New Methodology for the Identification of Metabolites of Saccharides and Cyclitols by Off-Line EC-MALDI-TOF-MS

机译:通过离线EC-MALDI-TOF-MS鉴定糖类和整流醇代谢物的新方法

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摘要

A combination of electrochemistry (EC) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry ( EC-MALDI-TOF-MS) was applied for determination of the studied biologically active compounds (D-glucose, D-fructose, D-galactose, D-pinitol, L- -inositol, and -inositol) and their possible electrochemical metabolites. In this work, boron-doped diamond electrode (BDD) was used as a working electrode. MALDI-TOF-MS experiments were carried out (both in positive and negative ion modes and using two matrices) to identify the structures of electrochemical products. This was one of the first applications of the EC system for the generation of electrochemical products produced from saccharides and cyclitols. Moreover, exploratory data analysis approaches (correlation networks, hierarchical cluster analysis, weighted plots) were used in order to present differences/similarities between the obtained spectra, regarding the class of analyzed compounds, ionization modes, and used matrices. This work presents the investigation and comparison of fragmentation patterns of sugars, cyclitols, and their respective products generated through the electrochemistry (EC) process.
机译:电化学(EC)和基质辅助激光解吸/电离飞行时间质谱(EC-MALDI-TOF-MS)的组合用于测定所研究的生物活性化合物(D-葡萄糖,D-果糖, D-半乳糖,D-吡啶醇,L- - 肌醇,和 - 肌醇)及其可能的电化学代谢物。在该工作中,硼掺杂的金刚石电极(BDD)用作工作电极。进行MALDI-TOF-MS实验(以正极和负离子模式和使用两个基质)进行(两者)以识别电化学产品的结构。这是EC系统为产生由糖类和整流醇产生的电化学产品的第一应用之一。此外,使用探索数据分析方法(相关网络,分层聚类分析,加权图),以便在所获得的光谱之间存在关于分析的化合物,电离模式和使用基质的类别之间所获得的差异/相似性。这项工作介绍了通过电化学(EC)过程产生的糖,核性醇和它们各自产品的碎片模式的调查和比较。

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