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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, nicotinic acetylcholine receptor binding, and antinociceptive properties of 2-exo-2-(2',3'-disubstituted 5'-pyridinyl)-7-azabicyclo(2.2.1)heptanes: epibatidine analogues.
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Synthesis, nicotinic acetylcholine receptor binding, and antinociceptive properties of 2-exo-2-(2',3'-disubstituted 5'-pyridinyl)-7-azabicyclo(2.2.1)heptanes: epibatidine analogues.

机译:2-exo-2-(2',3'-二取代5'-吡啶基)-7-氮杂双环(2.2.1)庚烷的合成,烟碱乙酰胆碱受体结合和抗伤害感受特性:Epibatidine类似物。

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摘要

A number of 2',3'-disubstituted epibatidine analogues were synthesized and evaluated in vitro for potency at nicotinic acetylcholine receptors (nAChRs) and in vivo for antinociception activity in the tail-flick and hot-plate models of acute pain and for their ability to affect core body temperature. Compounds that possessed electron-withdrawing groups (F, Cl, Br, and I) in both the 2'- and the 3'-positions showed affinities at the nAChR similar to epibatidine. However, in vivo efficacy did not correlate with affinity. 2-exo-(3'-Amino-2'-chloro-5'-pyridinyl)-7-azabicyclo[2.2.1]heptane (2i), an epibatidine analogue possessing an electron-releasing amino group in the 3'-position, produced the highest affinity. Compound 2i was also the most selective epibatidine analogue with a K(i) of 0.001 nM at alphabeta nAChRs, which is 26 times greater than that of epibatidine, and a alphabeta/alpha(7) K(i) ratio of 14,000, twice that of epibatidine. In vivo testing revealed that this compound potently inhibited nicotine-induced antinociception with AD(50) values below 1 microg/kg. Surprisingly, this same compound was also an agonist at higher doses (ED(50) approximately 20 microg/kg). Thus, the addition of the 3'-amino group to epibatidine confers potent antagonist activity to the compound with little effect on agonist activity. 2,3-Disubstituted epibatidine analogues possessing a 2'-amino group combined with a 3'-bromo or 3'-iodo group showed in vitro and in vivo nAChR properties similar to nicotine.
机译:合成了许多2',3'-二取代的Epibatidine类似物,并在体外评估了其对烟碱乙酰胆碱受体(nAChRs)的效力,并在体内对急性疼痛的甩尾和热板模型中的抗伤害感受活性及其功能进行了评估。影响核心体温。在2'和3'位置均具有吸电子基团(F,Cl,Br和I)的化合物在nAChR上的亲和力与Epibatidine相似。但是,体内功效与亲和力无关。 2-exo-(3'-Amino-2'-chloro-5'-吡啶基)-7-氮杂双环[2.2.1]庚烷(2i),一种在3'-位具有电子释放氨基的表巴替丁类似物,产生了最高的亲和力。化合物2i也是选择性最高的依巴替丁类似物,在字母nAChRs处的K(i)为0.001 nM,比表巴替丁的K(i)大26倍,字母/α(7)K(i)的比率为14,000,是表依巴替丁。体内测试表明,该化合物有效抑制尼古丁引起的抗伤害感受,其AD(50)值低于1 microg / kg。出乎意料的是,该相同化合物在更高剂量(ED(50)约20微克/千克)下也是激动剂。因此,将3'-氨基加到表巴替丁上赋予该化合物有效的拮抗剂活性,而对激动剂活性几乎没有影响。具有2'-氨基与3'-溴或3'-碘基结合的2,3-二取代的依巴替丁类似物在体内和体外表现出类似于尼古丁的nAChR特性。

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