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将烟碱型乙酰胆碱受体脱敏作为药物开发的一种策略。

Desensitization of nicotinic acetylcholine receptors as a strategy for drug development.

作者信息

Buccafusco Jerry J, Beach J Warren, Terry Alvin V

机构信息

Department of Pharmacology and Toxicology, Alzheimer's Research Center, Medical College of Georgia, Augusta, Georgia 30912-2300, USA.

出版信息

J Pharmacol Exp Ther. 2009 Feb;328(2):364-70. doi: 10.1124/jpet.108.145292. Epub 2008 Nov 20.

Abstract

The specific pharmacological response evoked by a nicotinic acetylcholine receptor (nAChR) agonist is governed by the anatomical distribution and expression of each receptor subtype and by the stoichiometry of subunits comprising each subtype. Contributing to this complexity is the ability of agonists that bind to the orthosteric site of the receptor to alter the affinity state of the receptor and induce desensitization and the observation that, at low doses, some nAChR antagonists evoke agonist-like nicotinic responses. Brain concentrations of nicotine rarely increase to the low-mid micromolar concentrations that have been reported to evoke direct agonist-like responses, such as calcium influx or neurotransmitter release. Low microgram per kilogram doses of nicotine administered to humans or to nonhuman primates to improve cognition and working memory probably result only in low nanomolar brain concentrations--more in line with the ability of nicotine to induce receptor desensitization. Here we review data illustrating that nicotine, its major metabolite cotinine, and two novel analogs of choline, JWB1-84-1 [2-(4-(pyridin-3-ylmethyl)piperazin-1-yl)ethanol] and JAY2-22-33, JWB1-84-1 [2-(methyl(pyridine-3-ylmethyl)amino)-ethanol], improve working memory in macaques. The effectiveness of these four compounds in the task was linearly related to their effectiveness in producing desensitization of the pressor response to ganglionic stimulation evoked by a nAChR agonist in rats. Only nicotine evoked an agonist-like action (increased resting blood pressure). Therefore, it is possible to develop new chemical entities that have the ability to desensitize nAChRs without an antecedent agonist action. Because these "silent desensitizers" are probably acting allosterically, an additional degree of subtype specificity could be attained.

摘要

烟碱型乙酰胆碱受体(nAChR)激动剂所引发的特定药理反应,取决于每种受体亚型的解剖分布和表达情况,以及构成各亚型的亚基化学计量。受体正向变构位点上的激动剂能够改变受体的亲和力状态并诱导脱敏,这增加了这种复杂性;此外还观察到,低剂量时一些nAChR拮抗剂会引发类似激动剂的烟碱样反应。大脑中的尼古丁浓度很少会升高到据报道能引发直接激动剂样反应(如钙内流或神经递质释放)的低至中微摩尔浓度。给人类或非人类灵长类动物低微克/千克剂量的尼古丁以改善认知和工作记忆,可能只会导致大脑中低纳摩尔浓度——这更符合尼古丁诱导受体脱敏的能力。在此,我们回顾相关数据,这些数据表明尼古丁、其主要代谢物可替宁,以及胆碱的两种新型类似物JWB1-84-1 [2-(4-(吡啶-3-基甲基)哌嗪-1-基)乙醇]和JAY2-22-33,JWB1-84-1 [2-(甲基(吡啶-3-基甲基)氨基)-乙醇],可改善猕猴的工作记忆。这四种化合物在该任务中的有效性与它们在使大鼠对nAChR激动剂诱发的神经节刺激的升压反应脱敏方面的有效性呈线性相关。只有尼古丁引发了类似激动剂的作用(静息血压升高)。因此,有可能开发出能够使nAChR脱敏而无前驱激动剂作用的新化学实体。由于这些“沉默脱敏剂”可能通过变构作用发挥作用,所以可以实现更高程度的亚型特异性。

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