Suppr超能文献

咪唑啉的受体相互作用。VI. 托拉唑啉样α肾上腺素能咪唑啉中分隔苯基和咪唑啉环的碳桥的意义。

Receptor interactrions of imidazolines. VI. Significance of carbon bridge separating phenyl and imidazoline rings of tolazoline-like alpha adrenergic imidazolines.

作者信息

Ruffolo R R, Yaden E L, Waddell J E, Dillard R D

出版信息

J Pharmacol Exp Ther. 1980 Sep;214(3):535-40.

PMID:6105202
Abstract

The pharmacological significance of the carbon bridge separating the imidazoline and phenyl rings of tolazoline-like alpha adrenergic imidazolines has been investigated. Extending the carbon bridge to two carbon atoms, or deleting the carbon bridge, lowers affinity of the imidazolines for the alpha receptor and markedly decreases or abolishes efficacy (i.e., agonist activity), suggesting that a single carbon atome optimallyu separates the phenyl and imidazoline rings. Although one carbon is optimal for alpha adrenergic activity, this particular atom does not appear to be essential since nitrogen may substitute for carbon with no marked or consistent changes observed in affinity or efficacy. Hydroxylation of the carbon bridge decreases affinity for the receptor approximately 10-fold but does not alter efficacy, whereas a similar substitution made in the norepinephrine-series of phenethylamines markedly increases affinity (Patil et al., 1974). With both the imidazolines and phenethylamines, this carbon atom may stereoselectively influence binding to the receptor. These results suggest that the carbon atom bridging the phenyl and imidazoline rings of tolazoline-like imidazolines serves only to provide optimal separation between these rings and does not contribute directly to the binding process. It is proposed that alpha adrenergic imidazolines interact differently with the alpha adrenergic receptor than the norepinephrine-like phenethylamines.

摘要

已对托拉唑啉样α-肾上腺素能咪唑啉中分隔咪唑啉环和苯环的碳桥的药理学意义进行了研究。将碳桥延长至两个碳原子,或去除碳桥,会降低咪唑啉对α受体的亲和力,并显著降低或消除其效能(即激动剂活性),这表明一个碳原子可最佳地分隔苯环和咪唑啉环。虽然一个碳原子对α-肾上腺素能活性是最佳的,但这个特定原子似乎并非必不可少,因为氮可替代碳,而在亲和力或效能方面未观察到明显或一致的变化。碳桥的羟基化使对受体的亲和力降低约10倍,但不改变效能,而在去甲肾上腺素系列的苯乙胺中进行类似取代则会显著增加亲和力(帕蒂尔等人,1974年)。对于咪唑啉和苯乙胺,这个碳原子可能会立体选择性地影响与受体的结合。这些结果表明,连接托拉唑啉样咪唑啉的苯环和咪唑啉环的碳原子仅起到在这些环之间提供最佳分隔的作用,并不直接参与结合过程。有人提出,α-肾上腺素能咪唑啉与α-肾上腺素能受体的相互作用方式与去甲肾上腺素样苯乙胺不同。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验