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首页> 外文期刊>Life sciences >CLASSICAL NON-CLASSICAL CANNABINOID HYBRIDS - STEREOCHEMICAL REQUIREMENTS FOR THE SOUTHERN HYDROXYALKYL CHAIN
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CLASSICAL NON-CLASSICAL CANNABINOID HYBRIDS - STEREOCHEMICAL REQUIREMENTS FOR THE SOUTHERN HYDROXYALKYL CHAIN

机译:经典非经典大麻素杂物-南部羟烷基链的立体化学要求

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摘要

We have synthesized a range of hybrid classical/ non-classical cannabinoids (CC/NCCs) combining the hexahydrocannabinol dibenzopyran structure with the hydroxyalkyl chain found in CP-55940, in order to investigate the role of the hydroxyalkyl pharmacophore in cannabimimetic activity. This was achieved by synthesizing CC analogs in which the 6 alpha- and 6 beta-methyl groups were modified to the corresponding hydroxyethyl groups. Our binding data indicated that beta position was the preferred orientation for the hydroxyalkyl moiety, affinity for the CB1 receptor being 20-fold greater for the 6 beta-hydroxyethyl than the corresponding 6 alpha-analog. Further studies using 6 beta-hydroxyalkyldibenzopyran analogs varying the southern aliphatic chain length from 6 beta-hydroxymethyl to 6 beta-hydroxyethyl to 6 beta-hydroxypropyl demonstrated little potency change with chain length. Therefore, we concluded that whilst the hydroxyalkyl pharmacophore was strongly affected by its configuration relative to the dibenzopyran ring, the chain length of the hydroxyalkyl moiety (up to the n=3 homolog) was not critical. [References: 10]
机译:我们已经合成了一系列杂合的经典/非经典大麻素(CC / NCC),它们结合了六氢大麻酚二苯并吡喃结构与CP-55940中的羟烷基链,以研究羟烷基药效团在大麻模拟活性中的作用。这是通过合成CC类似物实现的,其中6个α-和6个β-甲基被修饰为相应的羟乙基。我们的结合数据表明,β位置是羟烷基部分的首选方向,对CB1受体的亲和力对于6β-羟乙基比对应的6α-类似物大20倍。使用6个β-羟烷基二苯并吡喃类似物进行的进一步研究表明,南部脂肪链的长度从6个β-羟甲基变为6个β-羟乙基,再到6个β-羟丙基,随着链长的变化,效价变化很小。因此,我们得出结论,尽管相对于二苯并吡喃环,羟烷基药效团受到其构型的强烈影响,但是羟烷基部分的链长(直至n = 3同源物)并不关键。 [参考:10]

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