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首页> 外文期刊>Biochemical Pharmacology >Kinetic analysis of interactions between alkylene-linked bis-pyridiniumaldoximes and human acetylcholinesterases inhibited by various organophosphorus compounds.
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Kinetic analysis of interactions between alkylene-linked bis-pyridiniumaldoximes and human acetylcholinesterases inhibited by various organophosphorus compounds.

机译:各种有机磷化合物抑制的亚烷基连接的双吡啶鎓醛肟与人乙酰胆碱酯酶之间相互作用的动力学分析。

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摘要

The therapeutic approach of organophosphorus compound (OP) intoxications is to reactivate the inhibited enzyme acetylcholinesterase (AChE). Numerous studies demonstrated a limited efficacy of standard oxime-based reactivators against different nerve agents such as tabun and cyclosarin. This emphasizes research for more effective oximes. In the present study, reactivation kinetics of tabun-, sarin-, cyclosarin-, VX- or paraoxon-ethyl-inhibited human AChE (hAChE) with a homologous series of bis-ortho-pyridiniumaldoximes, Ortho-4 - Ortho-9, was investigated with a robot-assisted setting, allowing determination of second-order reactivation rate constants as well as model calculations. The reactivation constants of Ortho-4 - Ortho-9 resulted in marked differences of affinity and reactivity depending on the OP structure and the linker length of the oximes. In general, the K(D) values decreased with increasing linker length. Reactivity increased from Ortho-4 to Ortho-6 for PXE- and VX-inhibited hAChE and from Ortho-4 to Ortho-7 for GA-inhibited hAChE and decreased again with Ortho-8 and Ortho-9. In contrast, k(r) decreased with increasing linker length for sarin- and cyclosarin-inhibited hAChE. In view of the pronounced decrease of K(D) from Ortho-4 to Ortho-9, the k(r2) values increased with all tested OP. Hence, the ratios of K(I)/K(D) and of K(I)/k(r2) showed that in almost all cases the affinity of Ortho-N to the native hAChE was higher than to OP-inhibited enzyme. Model calculations indicated that Ortho-6 - Ortho-9 could be superior to obidoxime in reactivating tabun-inhibited hAChE. Finally, these data emphasize the need to develop oximes with a higher selective affinity towards OP-inhibited hAChE in order to minimize possible side effects.
机译:有机磷化合物(OP)中毒的治疗方法是重新激活被抑制的乙酰胆碱酯酶(AChE)。大量研究表明,基于肟的标准活化剂对不同的神经毒剂(如塔邦和环沙林)的疗效有限。这强调了对更有效的肟的研究。在本研究中,塔邦,沙林,环沙蛋白,VX或对氧磷乙基抑制的人AChE(hAChE)与双邻位邻吡啶鎓醛肟的同源系列Ortho-4-Ortho-9的活化动力学是使用机器人辅助设置进行了研究,从而可以确定二阶再激活速率常数以及模型计算。 Ortho-4-Ortho-9的再活化常数导致亲和力和反应性的显着差异,具体取决于OP结构和肟的连接基长度。通常,K(D)值随着接头长度的增加而降低。对于PXE和VX抑制的hAChE,反应性从Ortho-4增至Ortho-6,对于GA抑制的hAChE,反应性从Ortho-4至Ortho-7,并随Ortho-8和Ortho-9再次降低。相反,沙林和环沙林抑制的hAChE的k(r)随连接子长度的增加而降低。考虑到K(D)从Ortho-4到Ortho-9的明显降低,所有测试的OP的k(r2)值都增加了。因此,K(I)/ K(D)和K(I)/ k(r2)的比率表明,在几乎所有情况下,Ortho-N对天然hAChE的亲和力均高于对OP抑制酶的亲和力。模型计算表明,Ortho-6-Ortho-9在激活禁忌素抑制的hAChE方面可能优于obidoxime。最后,这些数据强调需要开发对OP抑制hAChE具有更高选择性亲和力的肟,以便最大程度地减少可能的副作用。

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