Faculty of Pharmaceutical Science, Tohoku Medical and Pharmaceutical University, 4-4-1 Komatsushima, Aoba, Sendai, Miyagi, 981-8558, Japan.
School of Pharmaceutical Sciences, Ohu University, 31-1 Misumido, Tomita-Machi, Koriyama, Fukushima, 963-8611, Japan.
Anal Sci. 2023 Mar;39(3):369-374. doi: 10.1007/s44211-022-00246-9. Epub 2022 Dec 28.
Nitroxyl radicals are known to electrochemically oxidize thiols as well as alcohols and amines. In this study, a preliminary investigation of the electrochemical reaction of thiols with 9-azabicyclo[3.3.1]nonane N-oxyl (ABNO), 2-azaadamantane N-oxyl (AZADO), and nortropine N-oxyl (NNO), which are highly active due to their bicyclo structures, for use in electrochemical analysis was performed and the results were compared with those for a typical nitroxyl radical compound, 2,2,6,6-tetramethylpiperidine N-oxyl (TEMPO). Mercaptopropane sulfonic acid (MPS) was used as a model compound to investigate the electrochemical response in aqueous solution. In addition, electrochemical detection of glutathione, a biological thiol molecule, was performed.
硝酰自由基已知可电化学氧化巯基、醇和胺。在这项研究中,初步研究了硫醇与 9-氮杂双环[3.3.1]壬烷 N-氧自由基(ABNO)、2-氮杂金刚烷 N-氧自由基(AZADO)和降诺文 N-氧自由基(NNO)的电化学反应,这些氮氧自由基由于其双环结构而具有高活性,用于电化学分析,并将结果与典型的硝酰自由基化合物 2,2,6,6-四甲基哌啶 N-氧自由基(TEMPO)进行了比较。使用 3-巯基丙磺酸(MPS)作为模型化合物来研究水溶液中的电化学响应。此外,还进行了生物硫醇分子谷胱甘肽的电化学检测。