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可逆性胆碱酯酶抑制剂的构效关系:烟碱型乙酰胆碱受体-离子通道复合物的激活、通道阻断及立体特异性

Structure-activity relationship of reversible cholinesterase inhibitors: activation, channel blockade and stereospecificity of the nicotinic acetylcholine receptor-ion channel complex.

作者信息

Albuquerque E X, Aracava Y, Cintra W M, Brossi A, Schönenberger B, Deshpande S S

机构信息

Laboratório de Farmacologia Molecular, Instituto de Biofísica Carlos Chagas Filho, Universidade Federal do Rio de Janeiro, Brasil.

出版信息

Braz J Med Biol Res. 1988;21(6):1173-96.

PMID:3074841
Abstract
  1. We have shown that all cholinesterase (ChE) inhibitors, in addition to their well-known anti-ChE activity, have multiple effects on the nicotinic acetylcholine receptor-ion channel (AChR) macromolecule resulting from interactions with the agonist recognition site and with sites located at the ion channel component. Activation, competitive antagonism and different types of noncompetitive blockade occurring at similar concentration ranges and contributing in different proportions result in complex and somewhat unpredictable alterations in AChR function. The question is now raised as to how each effect of these compounds contributes to their antidotal property against organophosphorus (OP) poisoning, and what set of actions makes one reversible ChE inhibitor a better antidote. Many lines of evidence support the importance of direct interactions with various sites on the AChR: 1) morphological and toxicological studies with (+) physostigmine showed that anti-ChE activity is not essential to protect animals against toxicity by irreversible ChE inhibitors; 2) (-)physostigmine is far more effective against OP poisoning; 3) open channel blockers such as mecamylamine with no significant anti-ChE activity enhance the protective action of (-)physostigmine; 4) neostigmine, pyridostigmine, (-)physostigmine and (+)physostigmine showed qualitatively and quantitatively distinct toxicity and damage to endplate morphology and function. 2. In prophylaxis and during the very early phase of OP poisoning, carbamates, especially (-)physostigmine combined with mecamylamine and atropine, could protect almost 100% of the animals exposed to multiple lethal doses of OPs. Electrophysiological data showed that (-)physostigmine, among several reversible ChE inhibitors, showed greater potency in depressing both endplate current (EPC) peak amplitude and tau EPC. Therefore, concerning neuromuscular transmission, it seems that the higher the potency of a drug in reducing endplate permeability, the better is its protection against OP toxicity. A reversible open channel blockade combined with some agonist property helps to decrease the effect of ACh at its agonist site and to reduce the ion permeability of open channels. It should be pointed out that, during the later phase of OP poisoning, AChR desensitization should be most prevalent. Thus, a drug that can remove the AChR from this rather irreversible state to a more reversible blocked state should be a better protector. Indeed, oximes such as 2-PAM and a more potent analog, HI-6, produce multiple alterations in AChR function that comprise increased channel activation and open-channel blockade.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们已经表明,所有胆碱酯酶(ChE)抑制剂,除了其众所周知的抗胆碱酯酶活性外,还对烟碱型乙酰胆碱受体离子通道(AChR)大分子有多种作用,这些作用源于与激动剂识别位点以及位于离子通道组分上的位点的相互作用。在相似浓度范围内发生的激活、竞争性拮抗和不同类型的非竞争性阻断,且以不同比例起作用,导致AChR功能出现复杂且有些不可预测的改变。现在提出的问题是,这些化合物的每种作用如何对其针对有机磷(OP)中毒的解毒特性做出贡献,以及哪一组作用使一种可逆性ChE抑制剂成为更好的解毒剂。许多证据支持与AChR上不同位点直接相互作用的重要性:1)对(+)毒扁豆碱的形态学和毒理学研究表明,抗胆碱酯酶活性对于保护动物免受不可逆性ChE抑制剂的毒性并非必不可少;2)(-)毒扁豆碱对OP中毒的效果要好得多;3)诸如美加明等无明显抗胆碱酯酶活性的开放通道阻滞剂可增强(-)毒扁豆碱的保护作用;4)新斯的明、吡啶斯的明、(-)毒扁豆碱和(+)毒扁豆碱在定性和定量上表现出不同的毒性以及对终板形态和功能的损害。2. 在OP中毒的预防阶段和极早期,氨基甲酸盐,尤其是(-)毒扁豆碱与美加明和阿托品联合使用,可保护几乎100%暴露于多次致死剂量OP的动物。电生理数据表明,在几种可逆性ChE抑制剂中,(-)毒扁豆碱在降低终板电流(EPC)峰值幅度和EPC时间常数方面表现出更大的效力。因此,就神经肌肉传递而言,似乎药物降低终板通透性的效力越高,其对OP毒性的保护作用就越好。可逆性开放通道阻断与某种激动剂特性相结合,有助于降低ACh在其激动剂位点的作用,并降低开放通道的离子通透性。应该指出的是,在OP中毒的后期,AChR脱敏应该最为普遍。因此,一种能够将AChR从这种相当不可逆的状态转变为更可逆的阻断状态的药物应该是更好的保护剂。事实上,诸如2-解磷定和一种更有效的类似物HI-6等肟类化合物会引起AChR功能的多种改变,包括增加通道激活和开放通道阻断。(摘要截选至400字)

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