CNRS, Laboratoire de Chimie de Coordination, LCC, UPR 8241, 205 Route de Narbonne, BP 44099, F-31077 Toulouse, Cedex 4, France.
Université de Toulouse, Université Paul Sabatier, UPS, 118 Route de Narbonne, F-31062 Toulouse, Cedex 9, France.
Chem Res Toxicol. 2021 Aug 16;34(8):1879-1889. doi: 10.1021/acs.chemrestox.1c00164. Epub 2021 Jul 28.
A chemical activation study of the thiocarbonyl-type antitubercular prodrugs, ethionamide (ETH), thioacetazone (TAZ), and isoxyl (ISO), was performed. Biomimetic oxidation of ethionamide using HO (1 equiv) led to ETH-SO as the only stable -oxide compound, which was found to occur in solution in the preferential form of a sulfine (ETH═S═O vs the sulfenic acid tautomer ETH-S-OH), as previously observed in the crystal state. It was also demonstrated that ETH-SO is capable of reacting with amines, as the putative sulfinic derivative (ETH-SOH) was supposed to do. Unlike ETH, oxidation of TAZ did not allow observation of the mono-oxygenated species (TAZ-SO), leading directly to the more stable sulfinic acid derivative (TAZ-SOH), which can then lose a SOH group after further oxidation or when placed in a basic medium. It was also noticed that the unstable TAZ-SO intermediate can lead to the carbodiimide derivative as another electrophilic species. It is suggested that TAZ-SOH, TAZ-SOH, and the carbodiimide compound can also react with NH-containing nucleophilic species, and therefore be involved in toxic effects. Finally, ISO showed a very complex reactivity, here assigned to the coexistence of two mono-oxygenated structures, the sulfine and sulfenic acid tautomers. The mono- and dioxygenated derivatives of ISO are also highly unstable, leading to a panel of multiple metabolites, which are still reactive and likely contribute to the toxicity of this prodrug.
硫代羰基型抗结核前药乙硫异烟胺(ETH)、硫代乙酰胺(TAZ)和异烟腙(ISO)的化学活化研究。使用 HO(1 当量)仿生氧化乙硫异烟胺,得到了唯一稳定的 -氧化物化合物 ETH-SO,与先前在晶体状态下观察到的情况一样,发现它在溶液中优先以亚砜(ETH═S═O 与亚磺酸互变异构体 ETH-S-OH)的形式存在。还证明了 ETH-SO 能够与胺反应,因为假定的亚磺酸衍生物(ETH-SOH)应该这样做。与 ETH 不同,TAZ 的氧化不允许观察到单氧化物种(TAZ-SO),直接导致更稳定的亚磺酸衍生物(TAZ-SOH),当进一步氧化或置于碱性介质中时,它可以失去一个 SOH 基团。还注意到不稳定的 TAZ-SO 中间体可以导致作为另一种亲电物种的碳二亚胺衍生物。有人建议 TAZ-SOH、TAZ-SOH 和碳二亚胺化合物也可以与含 NH 的亲核物种反应,因此可能参与毒性作用。最后,ISO 表现出非常复杂的反应性,这里归因于两种单氧化结构,即亚砜和亚磺酸互变异构体的共存。ISO 的单氧和双氧衍生物也非常不稳定,导致一系列多种代谢物,它们仍然具有反应性,可能有助于这种前药的毒性。