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具有预测血脑屏障穿透能力的有效 3-羟基-2-吡啶醛肟类化合物,可使有机磷抑制的胆碱酯酶复活。

Potent 3-Hydroxy-2-Pyridine Aldoxime Reactivators of Organophosphate-Inhibited Cholinesterases with Predicted Blood-Brain Barrier Penetration.

机构信息

Institute for Medical Research and Occupational Health, Ksaverska cesta 2, HR-10000, Zagreb, Croatia.

COBRA (UMR 6014), INSA Rouen, CNRS, Normandie Univ., UNIROUEN, 76000, Rouen, France.

出版信息

Chemistry. 2018 Jul 5;24(38):9675-9691. doi: 10.1002/chem.201801394. Epub 2018 Jun 8.

Abstract

A new series of 3-hydroxy-2-pyridine aldoxime compounds have been designed, synthesised and tested in vitro, in silico, and ex vivo as reactivators of human acetylcholinesterase (hAChE) and butyrylcholinesterase (hBChE) inhibited by organophosphates (OPs), for example, VX, sarin, cyclosarin, tabun, and paraoxon. The reactivation rates of three oximes (16-18) were determined to be greater than that of 2-PAM and comparable to that of HI-6, two pyridinium aldoximes currently used by the armies of several countries. The interactions important for a productive orientation of the oxime group within the OP-inhibited enzyme have been clarified by molecular-modelling studies, and by the resolution of the crystal structure of the complex of oxime 17 with Torpedo californica AChE. Blood-brain barrier penetration was predicted for oximes 15-18 based on their physicochemical properties and an in vitro brain membrane permeation assay. Among the evaluated compounds, two morpholine-3-hydroxypyridine aldoxime conjugates proved to be promising reactivators of OP-inhibited cholinesterases. Moreover, efficient ex vivo reactivation of phosphylated native cholinesterases by selected oximes enabled significant hydrolysis of VX, sarin, paraoxon, and cyclosarin in whole human blood, which indicates that the oximes have scavenging potential.

摘要

已经设计、合成并测试了一系列新的 3-羟基-2-吡啶醛肟化合物,它们作为人乙酰胆碱酯酶(hAChE)和丁酰胆碱酯酶(hBChE)的重活化剂,对有机磷(OPs)如 VX、沙林、梭曼、塔崩和对氧磷有抑制作用。三种肟(16-18)的重活化率大于 2-PAM,与目前几个国家军队使用的两种吡啶𬭩醛肟(HI-6)相当。通过分子建模研究和加州海兔乙酰胆碱酯酶与肟 17 复合物的晶体结构解析,阐明了肟基团在 OP 抑制酶中进行有效定向的重要相互作用。基于肟 15-18 的物理化学性质和体外细胞膜渗透测定,预测了它们对血脑屏障的穿透性。在所评估的化合物中,两种吗啉-3-羟基吡啶醛肟缀合物被证明是有希望的 OP 抑制胆碱酯酶重活化剂。此外,所选肟能有效体外重活化磷酸化的天然胆碱酯酶,使全血中 VX、沙林、对氧磷和梭曼的水解显著增加,这表明肟具有清除能力。

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