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首页> 外文期刊>Journal of Medicinal Chemistry >Probes for narcotic receptor mediated phenomena. 26. Synthesis and biological evaluation of diarylmethylpiperazines and diarylmethylpiperidines as novel, nonpeptidic delta opioid receptor ligands.
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Probes for narcotic receptor mediated phenomena. 26. Synthesis and biological evaluation of diarylmethylpiperazines and diarylmethylpiperidines as novel, nonpeptidic delta opioid receptor ligands.

机译:麻醉受体介导现象的探针。 26.二芳基甲基哌嗪和二芳基甲基哌啶作为新型非肽δ阿片受体配体的合成和生物学评价。

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摘要

We recently reported (+)-4-(alphaR)-alpha-{(2S,5R)-4-allyl-2, 5-dimethyl-1-piperazinyl}-3-methoxybenzyl-N,N-diethylbenzamide (1b, SNC80) as a novel nonpeptidic delta receptor agonist and explored the structure-activity relationships (SAR) of a series of related derivatives. We have found that delta binding activities and selectivity showed little change when the 3-methoxy group in 1b was removed or replaced by the other substituents, whereas the N, N-diethylbenzamide group is important for interaction with the delta receptor. Extensive modification of the piperazine nucleus led to the synthesis of a new series of N, N-diethyl(alpha-piperazinylbenzyl)benzamides (2, 3a-e), N, N-diethyl(alpha-piperidinyl or piperidinylidenebenzyl)benzamides (4a, 5a-c, 6a-b), and related derivatives (4b, 7a-c). Several compounds (2, 3a, 3e, 6a) strongly bound to the delta receptor with K(i) values in the low nanomolar range. On the other hand, the binding affinities of these compounds for the mu and kappa receptors were negligible, indicating excellent delta opioid receptor subtype selectivity. The two nitrogen atoms on the piperazine nucleus showed different SAR in the interaction of this series of compounds at the delta receptor. Nitrogen N(4) appears to be an important structural element and is essential for electrostatic interaction, while N(1) seems to be unnecessary for recognition at the delta receptor.
机译:我们最近报道了(+)-4-(alphaR)-alpha-{(2S,5R)-4-allyl-2,5-二甲基-1-哌嗪基} -3-甲氧基苄基-N,N-二乙基苯甲酰胺(1b,SNC80 )作为一种新型的非肽δ受体激动剂,并探索了一系列相关衍生物的构效关系(SAR)。我们发现当1b中的3-甲氧基被其他取代基取代或取代时,δ结合活性和选择性几乎没有变化,而N,N-二乙基苯甲酰胺基对于与δ受体的相互作用很重要。哌嗪核的广泛修饰导致合成了一系列新的N,N-二乙基(α-哌嗪基苄基)苯甲酰胺(2,3a-e),N,N-二乙基(α-哌啶基或哌啶亚基苄基)苯甲酰胺(4a, 5a-c,6a-b)和相关派生词(4b,7a-c)。几种化合物(2、3a,3e,6a)以低纳摩尔范围内的K(i)值牢固地结合到δ受体上。另一方面,这些化合物对mu和κ受体的结合亲和力可忽略不计,表明优异的δ阿片样物质受体亚型选择性。在该系列化合物在δ受体上的相互作用中,哌嗪核上的两个氮原子显示出不同的SAR。氮N(4)似乎是重要的结构元素,并且是静电相互作用必不可少的元素,而N(1)似乎对于在δ受体处的识别而言是不必要的。

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