Analytical Biochemistry and Mass Spectrometry Core Facility, Department of Pharmacy, University of Groningen, Groningen, The Netherlands.
Analyst. 2011 Dec 7;136(23):5064-7. doi: 10.1039/c1an15643h. Epub 2011 Oct 7.
Electrochemistry in combination with mass spectrometry is emerging as a versatile analytical technique in the imitation of oxidative drug metabolism during the early stages of drug discovery and development. Here, we present electrochemical O-dealkylation of phenacetin to acetaminophen by square-wave potential pulses consisting of consecutive sub-second oxidation and reduction steps. This O-dealkylation could not be achieved by oxidation at constant potential or longer potential pulses because of the fast hydrolysis of the reactive intermediates. Electrochemical conversion by square-wave potential pulses can thus widen the scope of electrochemical synthesis of metabolites and imitation of in vivo drug metabolism.
电化学与质谱联用在药物发现和开发的早期阶段,作为一种模拟氧化药物代谢的多功能分析技术而崭露头角。在这里,我们通过由连续亚秒级氧化和还原步骤组成的方波电势脉冲实现了非那西汀的电化学 O-脱烷基化反应生成对乙酰氨基酚。由于反应中间体的快速水解,恒电位或更长的电势脉冲氧化无法实现这种 O-脱烷基化。因此,方波电势脉冲的电化学转化可以拓宽代谢物电化学合成和模拟体内药物代谢的范围。