Department of Chemistry, Saint Louis University, 3501 Laclede Ave, St louis MO, USA.
Cardiovascular Comprehensive Care Center, Saint Louis University, 3635 Vista Ave, St louis MO, USA.
Analyst. 2018 Jul 21;143(14):3408-3414. doi: 10.1039/c8an00490k. Epub 2018 Jun 19.
Metabolomics, the study of small molecules involved in cellular processes, offers the potential to reveal insights into the pathophysiology of disease states. Analysis of metabolites by electrospray mass spectrometry is complicated by their structural diversity. Amine, hydroxyl, and carboxylate groups all affect signal responses differently based on their polarity and proton affinity. This heterogeneity of signal response, sensitivity, and resistance to competing ionization complicates metabolite quantitation. Such limitations can be mitigated by a dual derivatization scheme. In this work, primary amine and hydroxyl groups are tagged with a linear acyl chloride head containing a tertiary amine tail, followed by carboxylate groups coupled to a linear amine tag with a tertiary amine tail. This tagging scheme increases analyte proton affinity and hydrophobicity. In the case of carboxylate groups, the inherent anionic charge is inverted to a cationic charge. This dual tagging is completed within 2.5 hours, diminishes adduct formation, and improves sensitivity by >75-fold. The average limit of detection for 23 metabolites was 38 nM and the R was 0.97. This process was used to investigate metabolite changes from human tissue. Examination of diabetic and non-diabetic human tissue showed marked changes in both energy metabolites and amino acids. Further examination of the tissue showed that HbA1C value is inversely correlated with fumarate levels. This technique potentially allows for the analysis of virtually all metabolites in a single analytical run. Thus, it may lead to a more complete picture of metabolic dysfunction in human disease.
代谢组学是研究细胞过程中涉及的小分子的学科,它有潜力揭示疾病状态的病理生理学的见解。通过电喷雾质谱分析代谢物时,由于它们的结构多样性而变得复杂。基于其极性和质子亲和力,胺、羟基和羧基基团都会对信号响应产生不同的影响。这种信号响应、灵敏度和对竞争电离的抗性的异质性使代谢物定量变得复杂。通过双重衍生化方案可以减轻这种局限性。在这项工作中,伯胺和羟基被带有叔胺尾巴的线性酰氯头标记,然后羧基与带有叔胺尾巴的线性胺标签偶联。这种标记方案增加了分析物的质子亲和力和疏水性。在羧基的情况下,固有阴离子电荷被反转成阳离子电荷。这种双重标记在 2.5 小时内完成,减少了加合物的形成,并将灵敏度提高了 75 倍以上。23 种代谢物的平均检出限为 38 nM,R 为 0.97。该过程用于研究来自人体组织的代谢物变化。对糖尿病和非糖尿病人体组织的检查显示,能量代谢物和氨基酸都有明显变化。进一步检查组织表明,HbA1C 值与富马酸水平呈负相关。该技术有可能在单个分析运行中分析几乎所有的代谢物。因此,它可能会更全面地了解人类疾病中的代谢功能障碍。