对氧磷
解磷定
吡啶
肟
化学
生物信息学
乙酰胆碱酯酶
神经毒剂
部分
胆碱酯酶
药理学
解毒剂
伊萨丁
药效团
组合化学
体外
立体化学
毒理
生物化学
有机化学
酶
毒性
医学
生物
基因
作者
Daniel A. S. Kitagawa,Rafael B. Rodrigues,Thiago N. Silva,Wellington V. dos Santos,Vinicius C. V. da Rocha,Joyce S. F. D. de Almeida,Leandro B. Bernardo,Taynara Carvalho-Silva,Cíntia N. Ferreira,Angelo A. T. da Silva,Alessandro B. C. Simas,Eugenie Nepovimová,Kamil Kuča,Tanos C. C. França,Samir F. de A. Cavalcante
标识
DOI:10.1080/14756366.2021.1916009
摘要
Organophosphorus poisoning caused by some pesticides and nerve agents is a life-threating condition that must be swiftly addressed to avoid casualties. Despite the availability of medical countermeasures, the clinically available compounds lack a broad spectrum, are not effective towards all organophosphorus toxins, and have poor pharmacokinetics properties to allow them crossing the blood-brain barrier, hampering cholinesterase reactivation at the central nervous system. In this work, we designed and synthesised novel isatin derivatives, linked to a pyridinium 4-oxime moiety by an alkyl chain with improved calculated properties, and tested their reactivation potency against paraoxon- and NEMP-inhibited acetylcholinesterase in comparison to the standard antidote pralidoxime. Our results showed that these compounds displayed comparable in vitro reactivation also pointed by the in silico studies, suggesting that they are promising compounds to tackle organophosphorus poisoning.
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