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未带电的单肟和双肟:寻找两性离子以对抗有机磷中毒。

Uncharged mono- and bisoximes: In search of a zwitterion to countermeasure organophosphorus intoxication.

机构信息

University of Defence, Military Faculty of Medicine, Department of Toxicology and Military Pharmacy, Trebesska 1575, 500 01 Hradec Kralove, Czech Republic; University Hospital Hradec Kralove, Biomedical Research Centre, Sokolska 581, 500 05 Hradec Kralove, Czech Republic.

University Hospital Hradec Kralove, Biomedical Research Centre, Sokolska 581, 500 05 Hradec Kralove, Czech Republic; University Hospital Hradec Kralove, Hospital Pharmacy, Sokolska 581, 500 05 Hradec Kralove, Czech Republic.

出版信息

Chem Biol Interact. 2024 May 1;394:110941. doi: 10.1016/j.cbi.2024.110941. Epub 2024 Mar 16.

Abstract

The current study imposes a new class of organophosphorus (OP)-inhibited cholinesterase reactivators by conceptualizing a family of asymmetric bisoximes with various reactivating scaffolds. Several novel nucleophilic warheads were investigated, putting forward 29 novel reactivating options, by evaluating their nucleophilicity and ability to directly decompose OP compounds. Adopting the so-called zwitterionic strategy, 17 mono-oxime and nine bisoxime reactivators were discovered with major emphasis on the bifunctional-moiety approach. Compounds were compared with clinically used standards and other known experimentally highlighted reactivators. Our results clearly favor the concept of asymmetric bisoximes as leading reactivators in terms of efficacy and versatility. These top-ranked compounds were characterized in detail by reactivation kinetics parameters and evaluated for potential CNS availability. The highlighted molecules 55, 57, and 58 with various reactivating warheads, surpassed the reactivating potency of pralidoxime and several notable uncharged reactivators. The versatility of lead drug candidate 55 was also inspected on OP-inhibited butyrylcholinesterase, revealing a much higher rate compared to existing clinical antidotes.

摘要

本研究通过构思具有各种重活化支架的不对称双肟家族,为有机磷(OP)抑制的胆碱酯酶重活化剂引入了一类新的化合物。通过评估其亲核性和直接分解 OP 化合物的能力,研究人员研究了几种新型亲核弹头,提出了 29 种新的重活化选择。采用所谓的两性离子策略,发现了 17 种单肟和 9 种双肟重活化剂,主要侧重于双官能部分方法。化合物与临床使用的标准和其他已知的实验突出的重活化剂进行了比较。我们的结果清楚地表明,不对称双肟作为高效和多功能的主导重活化剂的概念是合理的。这些排名靠前的化合物通过重活化动力学参数进行了详细表征,并评估了其潜在的中枢神经系统可用性。具有各种重活化弹头的突出分子 55、57 和 58,超过了氯解磷定和几种显著不带电荷的重活化剂的重活化效力。先导药物候选物 55 的多功能性也在 OP 抑制的丁酰胆碱酯酶上进行了检查,与现有的临床解毒剂相比,其反应速率要高得多。

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