The series of symmetrical and unsymmetrical isoquinolinium-5-carbaldoximes was designed and prepared for cholinesterase reactivation purposes. The novel compounds were evaluated for intrinsic acetylcholinesterase (AChE) or butyrylcholinesterase (BChE) inhibition, when the majority of novel compounds resulted with high inhibition of both enzymes and only weak inhibitors were selected for reactivation experiments on human AChE or BChE inhibited by sarin, VX, or paraoxon. The AChE reactivation for all used organophosphates was found negligible if compared to the reactivation ability of obidoxime. Importantly, two compounds were found to reactivate BChE inhibited by sarin or VX better to obidoxime at human attainable concentration. One compound resulted as better reactivator of NEMP (VX surrogate)-inhibited BChE than obidoxime. The in vitro results were further rationalized by molecular docking studies showing future directions on designing potent BChE reactivators.

译文

:设计并制备了一系列对称和不对称的异喹啉鎓-5-carbaldoximes,用于胆碱酯酶的活化。当大多数新型化合物对两种酶均具有高度抑制作用且仅选择弱抑制剂用于沙林,VX抑制的人AChE或BChE的再活化实验时,评估了这些新型化合物的内在乙酰胆碱酯酶(AChE)或丁酰胆碱酯酶(BChE)抑制作用。或对氧磷。如果与Obobxime的再活化能力相比,发现所有用过的有机磷酸酯的AChE再活化可以忽略不计。重要的是,发现两种化合物能够在人可达到的浓度下将沙林或VX抑制的BChE更好地活化为obidoxime。一种化合物产生了比奥比多肟更好的NEMP(VX替代物)抑制的BChE活化剂。通过分子对接研究进一步合理化了体外结果,显示了设计有效BChE活化剂的未来方向。

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