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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Investigation of the reactivation kinetics of a large series of bispyridinium oximes with organophosphate-inhibited human acetylcholinesterase
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Investigation of the reactivation kinetics of a large series of bispyridinium oximes with organophosphate-inhibited human acetylcholinesterase

机译:大量的双吡啶肟与有机磷酸酯抑制的人乙酰胆碱酯酶的活化动力学研究

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摘要

The limited effectiveness of the established oximes obidoxime and pralidoxime resulted in ongoing research on novel oximes for the reactivation of acetylcholinesterase (AChE) inhibited by organophosphorus compounds (OP). In order to get more insight into the ability of bispyridinium oximes to reactivate human AChE inhibited by structurally different OP the reactivation kinetics of 31 compounds was determined with tabun-, cyclosarin- and paraoxon-inhibited AChE under identical experimental conditions. The determined affinity (K-D), reactivity (k(r)) and hybrid reactivation rate constants (k(r2)) enabled theoretical calculations and gave insight into distinct structural features which are important for the reactivation of AChE inhibited by different OP. Several oximes with superior reactivating potency towards selective OP-AChE conjugates were identified but none of the tested oximes can be considered as a broad spectrum reactivator. In the end, the data of this and previous studies gives rise to the question whether further modifications of the bispyridinium structure could ever result in a universal reactivator or whether future research should be directed to different templates. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:已建立的肟,obidoxime和pralidoxime的有效性有限,导致了对新型肟重新活化受有机磷化合物(OP)抑制的乙酰胆碱酯酶(AChE)的研究。为了更深入地了解双吡啶肟肟重新激活结构上不同的OP抑制的人AChE的能力,在相同的实验条件下,用tabun,cyclosarin和paraoxon抑制的AChE测定了31种化合物的激活动力学。所确定的亲和力(K-D),反应性(k(r))和杂合再活化速率常数(k(r2))可以进行理论计算,并深入了解不同的结构特征,这些特征对于不同OP抑制的AChE的重新活化很重要。鉴定了几种对选择性OP-AChE共轭物具有优异活化活性的肟,但没有一种被认为是广谱活化剂。最后,本研究和先前研究的数据引发了一个问题,即对双吡啶鎓结构的进一步修饰是否可能会导致通用的活化剂,或者未来的研究是否应针对不同的模板。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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