University of Hamburg, Hamburg School of Food Science, Institute of Food Chemistry, Martin-Luther-King-Platz 6, 20146 Hamburg, Germany.
Molecules. 2019 Jun 26;24(13):2369. doi: 10.3390/molecules24132369.
The electrochemical behavior of the vitamers cholecalciferol and ergocalciferol was investigated in order to determine whether it is possible to evaluate phase-I and phase-II metabolism of these steroids and yield metabolites that can serve as reference material. The vitamers were electrochemically-oxidized using an electrochemical system (ROXY™ EC system). The influence of pH value, solvent, and potential was evaluated. When using methanol or ethanol, the formation of artificial methoxy or ethoxy groups, respectively, was observed, while the use of acetonitrile did not show any formation of further functional groups. A neutral pH value and use of a constant potential led to the highest number of oxidation products with intensive signals. Additionally, a binding study between vitamin D and glucuronic acid as an example for phase-II conjugation was carried out. It was possible to detect adduct formation. Coupling mass spectrometry directly to electrochemistry (EC-MS) is a promising approach for generating vitamin D metabolites and/or yielding a number of metabolites without in vivo or in vitro test systems. It can support or even replace animal studies in the long-term and might be promising for yielding reference compounds.
为了确定是否可以评估这些类固醇的 I 相和 II 相代谢,并生成可作为参考物质的代谢物,研究了胆钙化醇和麦角钙化醇的维生素形式的电化学行为。使用电化学系统(ROXY™ EC 系统)电化学氧化维生素形式。评估了 pH 值、溶剂和电位的影响。当使用甲醇或乙醇时,分别观察到形成人工甲氧基或乙氧基,而使用乙腈则没有显示出任何进一步的官能团形成。中性 pH 值和恒电位导致具有强烈信号的氧化产物数量最多。此外,还进行了维生素 D 与葡萄糖醛酸结合的结合研究,作为 II 相结合的示例。可以检测到加合物的形成。将电化学反应(EC-MS)直接与耦合质谱联用是一种很有前途的生成维生素 D 代谢物的方法,或者在无需体内或体外测试系统的情况下生成多种代谢物。它可以在长期内支持甚至替代动物研究,并且对于生成参考化合物可能很有前景。