Department of Chemistry and Biochemistry, Saint Louis University, 3501 Laclede Ave, St Louis, MO, 63103, USA.
Anal Methods. 2022 Sep 15;14(35):3397-3404. doi: 10.1039/d2ay01108e.
Heterogeneity in metabolite structure and charge state complicates their analysis in electrospray mass spectrometry (ESI-MS). Complications such as diminished signal response and quantitation can be reduced by sequential dual-stage derivatization and capillary RP LC-ESI-MS analysis. Our sequential dual-stage chemical derivatization reacts analyte primary amine and hydroxyl groups with a linear acyl chloride head containing a tertiary amine moiety. Analyte carboxylate groups are then coupled to a linear amine tag with a tertiary amine moiety. This increase in the number of tags on analytes increases analyte proton affinity and hydrophobicity. We derivatized 250 metabolite standards which on average improved signal to noise by >44-fold, with an average limit of detection of 66 nM and of 0.98. This system detected 107 metabolites from 18 BAECs, 111 metabolites from human urine, and 153 from human serum based on retention time, exact mass, and MS/MS matches from a derivatized standard library. As a proof of concept, aortic endothelial cells were treated with epinephrine and analyzed by the dual-stage derivatization. We observed changes in 32 metabolites with many increases related to energy metabolism, specifically in the TCA cycle. A decrease in lactate levels and corresponding increase in pyruvate levels suggest that epinephrine causes a movement away from glycolytic reliance on energy and a shift towards the more efficient TCA respiration for increasing energy.
代谢物结构和电荷状态的异质性使得它们在电喷雾质谱(ESI-MS)分析中变得复杂。通过顺序双阶段衍生化和毛细管 RP LC-ESI-MS 分析,可以减少信号响应和定量的减弱等问题。我们的顺序双阶段化学衍生化反应将分析物的伯胺和羟基与含有叔胺部分的线性酰氯头反应。然后,分析物的羧酸盐与含有叔胺部分的线性胺标签偶联。这增加了分析物的标签数量,从而增加了分析物的质子亲和力和疏水性。我们衍生化了 250 个代谢物标准品,平均提高了 44 倍以上的信号噪声比,平均检测限为 66 nM,置信度为 0.98。该系统基于保留时间、衍生化标准品库中的精确质量和 MS/MS 匹配,从 18 个 BAEC 中检测到 107 种代谢物,从人尿中检测到 111 种代谢物,从人血清中检测到 153 种代谢物。作为概念验证,用肾上腺素处理主动脉内皮细胞,并通过双阶段衍生化进行分析。我们观察到 32 种代谢物发生了变化,许多与能量代谢有关的代谢物增加,特别是在 TCA 循环中。乳酸水平降低和相应的丙酮酸水平升高表明,肾上腺素导致从依赖糖酵解获取能量转变为更有效的 TCA 呼吸以增加能量。