Hinz V C, Grewig S, Schmidt B H
Institute for Neurobiology, Troponwerke GmbH & Co. KG, Cologne, Koln, Germany.
Neurochem Res. 1996 Mar;21(3):331-7. doi: 10.1007/BF02531649.
Metrifonate, a long-acting cholinesterase (ChE) inhibitor with very low toxicity in warm-blooded animals, inhibits rat brain and serum cholinesterase (ChE) in vitro through its hydrolytic degradation product, dichlorvos. This conclusion is based on the finding that metrifonate-induced ChE inhibition showed the same pH dependence as its reported dehydrochlorination to dichlorvos. The ChE inhibition induced by dichlorvos was not pH dependent. It was mediated by a competitive drug interaction with the catalytic site of the enzyme, which led to irreversible inhibition within several minutes of incubation. After this time, addition of further substrate to the inhibited enzyme was not able to promote drug dissociation and hence enzyme reactivation. Similar characteristics of inhibition, i.e. interaction with the substrate binding site and time-dependent switch to non-competitive inhibition were observed with the reference compound, physostigmine. However, the physostigmine-induced inhibition of ChE could be readily reversed by further substrate addition. Another reference compound, tetrahydroaminoacridine (THA), also induced a reversible inhibition of rat brain and serum cholinesterase, but with a mechanism of action different from that of both dichlorvos and physostigmine in that enzyme inhibition occurred rapidly upon drug addition at an allosteric site on the enzyme surface. It is suggested that the unique slow release plus the slow inhibition of ChE by dichlorvos is responsible for the lower toxicity of metrifonate compared to that of directly acting ChE inhibitors.
敌百虫是一种在温血动物中具有极低毒性的长效胆碱酯酶(ChE)抑制剂,它通过其水解降解产物敌敌畏在体外抑制大鼠脑和血清胆碱酯酶(ChE)。这一结论基于以下发现:敌百虫诱导的胆碱酯酶抑制表现出与其报道的脱氯化氢生成敌敌畏相同的pH依赖性。敌敌畏诱导的胆碱酯酶抑制不依赖于pH。它是由药物与酶的催化位点竞争性相互作用介导的,这导致在孵育几分钟内产生不可逆抑制。在此之后,向被抑制的酶中添加更多底物并不能促进药物解离,因此酶也不能重新激活。参考化合物毒扁豆碱也观察到了类似的抑制特征,即与底物结合位点相互作用以及随时间转变为非竞争性抑制。然而,毒扁豆碱诱导的胆碱酯酶抑制可通过添加更多底物轻易逆转。另一种参考化合物四氢氨基吖啶(THA)也诱导了大鼠脑和血清胆碱酯酶的可逆抑制,但其作用机制与敌敌畏和毒扁豆碱均不同,因为在药物添加到酶表面的变构位点后,酶抑制迅速发生。有人认为,敌敌畏独特的缓慢释放加上对胆碱酯酶的缓慢抑制,是敌百虫与直接作用的胆碱酯酶抑制剂相比毒性较低的原因。