首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis, cannabinoid receptor affinity, molecular modeling studies and in vivo pharmacological evaluation of new substituted 1-aryl-5-(1H-pyrrol-1-yl)-1H-pyrazole-3-carboxamides. 2. Effect of the 3-carboxamide substituent on the affinity and selectivity profile.
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Synthesis, cannabinoid receptor affinity, molecular modeling studies and in vivo pharmacological evaluation of new substituted 1-aryl-5-(1H-pyrrol-1-yl)-1H-pyrazole-3-carboxamides. 2. Effect of the 3-carboxamide substituent on the affinity and selectivity profile.

机译:合成,大麻素受体亲和力,分子模型研究和体内新的取代的1-芳基5-(1H-吡咯-1-基)-1H-吡唑-3-羧酰胺的体内药理学评估。 2. 3-羧酰胺取代基对亲和力和选择性的影响。

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摘要

New substituted 1-aryl-5-(1H-pyrrol-1-yl)-1H-pyrazole-3-carboxamides were synthesized by replacing the 2,4-dichlorobenzyl and cyclohexyl moieties at the 3-carboxamide nitrogen of the previously reported CB(1) receptor antagonists/inverse agonists 4 and 5. Several ligands showed potent affinity for the hCB(1) receptor, with K(i) concentrations comparable to the reference compounds 1, 4 and 5, and exhibited CB(1) selectivity comparable to 1 and 2. Docking experiments and molecular dynamics (MD) simulations explained the potent hCB(1) binding affinity of compounds 31 and 37. According to our previous studies, 31 and 37 formed a H-bond with K3.28(192), which accounted for the high affinity for the receptor inactive state and the inverse agonist activity. The finding of inhibition of food intake following their acute administration to rats, supported the concept that the CB(1) selective compounds 4 and 52 act as antagonists/inverse agonists.
机译:通过取代先前报道的CB(3-C酰胺氮)上的2,4-二氯苄基和环己基部分,合成了新的取代的1-芳基-5-(1H-吡咯-1-基)-1H-吡唑-3-羧酰胺。 1)受体拮抗剂/反向激动剂4和5。一些配体显示出对hCB(1)受体的强亲和力,其K(i)浓度可与参考化合物1、4和5相媲美,并且对CB(1)的选择性可与1和2。对接实验和分子动力学(MD)模拟解释了化合物31和37与hCB(1)的强结合亲和力。根据我们先前的研究,31和37与K3.28(192)形成氢键,这说明了对受体无活性状态和反向激动剂活性的高亲和力。在对大鼠急性给药后发现食物摄入受到抑制,这支持了CB(1)选择性化合物4和52充当拮抗剂/反向激动剂的概念。

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