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对四氢大麻酚侧链的操控区分出激动剂、部分激动剂和拮抗剂。

Manipulation of the tetrahydrocannabinol side chain delineates agonists, partial agonists, and antagonists.

作者信息

Martin B R, Jefferson R, Winckler R, Wiley J L, Huffman J W, Crocker P J, Saha B, Razdan R K

机构信息

Department of Pharmacology and Toxicology, Medical College of Virginia, Virginia Commonwealth University, Richmond, Virginia, USA.

出版信息

J Pharmacol Exp Ther. 1999 Sep;290(3):1065-79.

Abstract

Structure-activity relation studies have established that the alkyl side chain in tetrahydrocannabinol (THC) plays a crucial role in the activation of the cannabinoid receptor. Unfortunately, the flexible nature of this side chain has hampered efforts to elucidate the precise nature of the interaction of THC with its receptors. Therefore, a series of analogs with structurally restrained side chains of varying length was synthesized and evaluated for pharmacological potency in mice and for receptor affinity. The introduction of cis double bonds inserted rigid angles, whereas triple bonds developed regions of planarity. Receptor affinity for the acetylenic and saturated side chains were the same, whereas double bond substitution increased affinity 10-fold. Moreover, the relationship between receptor affinity and potency was 10-fold less than that of Delta(8)-THC in the case of some acetylenic derivatives, whereas changing the triple bond to a double bond restored the potency/affinity ratio. Additionally, an acetylene at C2-C3 in the octyl and nonyl side chains favored antinociception by as much as 70-fold. Surprisingly, several high-affinity acetylenic derivatives, especially those with cyano substitutions at the terminus of the side chain, were partial agonists or were inactive. Some of these low-efficacy, high-affinity ligands elicited antagonistic activity. The finding that manipulations of the side chain produces high- affinity ligands with either antagonist, partial agonist, or full agonist effects reveals a critical structural feature for receptor activation.

摘要

构效关系研究表明,四氢大麻酚(THC)中的烷基侧链在大麻素受体的激活中起着关键作用。不幸的是,该侧链的柔性性质阻碍了阐明THC与其受体相互作用精确性质的努力。因此,合成了一系列具有不同长度结构受限侧链的类似物,并评估了它们在小鼠中的药理效力和受体亲和力。顺式双键的引入产生了刚性角,而三键形成了平面区域。炔属和饱和侧链的受体亲和力相同,而双键取代使亲和力增加了10倍。此外,在一些炔属衍生物中,受体亲和力与效力之间的关系比δ(8)-THC的情况低10倍,而将三键变为双键可恢复效力/亲和力比。此外,辛基和壬基侧链中C2-C3处的乙炔使抗伤害感受增强多达70倍。令人惊讶的是,几种高亲和力的炔属衍生物,尤其是那些在侧链末端带有氰基取代的衍生物,是部分激动剂或无活性。其中一些低效、高亲和力的配体引发了拮抗活性。侧链操作产生具有拮抗剂、部分激动剂或完全激动剂作用的高亲和力配体这一发现揭示了受体激活的关键结构特征。

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