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肾上腺素能药物。4. 作为潜在β-肾上腺素能激动剂的取代苯氧基丙醇胺衍生物。

Adrenergic agents. 4. Substituted phenoxypropanolamine derivatives as potential beta-adrenergic agonists.

作者信息

Kaiser C, Jen T, Garvey E, Bowen W D, Colella D F, Wardel J R

出版信息

J Med Chem. 1977 May;20(5):687-92. doi: 10.1021/jm00215a014.

Abstract

A series of 1-(substituted phenoxy)-3-(tert-butylamino)-2-propanols in which the ring substituents were 3,4-dihydroxy (6f), 3- and 4-hydroxy (6g and 6h, respectively), 3-hydroxy-4-methylsulfonamido (6i), its 3,4-transposed isomer (6j), and 4-methylsulfonylmethyl (6k) was prepared and examined for beta-adrenergic agonist and/or antagonist properties. Two of these compounds, 6f and 6j, were potent beta-adrenoreceptor agonists in in vitro tests that measure a compound's ability to relax guinea pig tracheal smooth muscle and to increase the rate of contraction of guinea pig right atria. Several compounds had a dose-dependent effect. Although they produced potent beta-adrenergic agonist activity at low concentrations, 6g, 6h, and 6j antagonized the effects of a standard beta-adrenoreceptor agonist at higher concentrations. The methylsulfonylmethyl derivative 6k produced beta-adrenergic blocking effects as demonstrated by attenuation of isoproterenol-induced increases in the rate of contraction of an isolated rabbit heart preparation. On the basis of these pharmacological results, coupled with NMR spectral data, it appears that the previous suggestion that aryloxypropanolamines interact with beta-adrenocreceptors as a consequence of their ability to assume an orientation in which the benzene ring the ethanolamine moieties can be superimposed on those of corresponding adrenergic phenylethanolamines is invalid. An alternative "bicyclic" rigid conformation involving two intramolecular hydrogen bonds in the protonated form of the aryloxypropanolamines is suggested to account for the similar beta-adrenoreceptor activity of these compounds and related phenylethanolamines.

摘要

制备了一系列1-(取代苯氧基)-3-(叔丁基氨基)-2-丙醇,其中环取代基分别为3,4-二羟基(6f)、3-羟基和4-羟基(分别为6g和6h)、3-羟基-4-甲基磺酰胺基(6i)、其3,4-反式异构体(6j)和4-甲基磺酰甲基(6k),并对其β-肾上腺素能激动剂和/或拮抗剂特性进行了研究。在体外试验中,这些化合物中的两种,即6f和6j,是有效的β-肾上腺素受体激动剂,该试验用于测量化合物舒张豚鼠气管平滑肌和增加豚鼠右心房收缩速率的能力。几种化合物具有剂量依赖性效应。尽管它们在低浓度时产生有效的β-肾上腺素能激动剂活性,但6g、6h和6j在较高浓度时拮抗标准β-肾上腺素受体激动剂的作用。甲基磺酰甲基衍生物6k产生了β-肾上腺素能阻断作用,这通过异丙肾上腺素诱导的离体兔心脏制剂收缩速率增加的减弱得以证明。基于这些药理学结果,结合核磁共振光谱数据,先前认为芳氧基丙醇胺由于能够呈现一种取向,使得苯环与乙醇胺部分可以与相应的肾上腺素能苯乙醇胺的部分重叠,从而与β-肾上腺素受体相互作用的观点似乎是无效的。有人提出一种替代的“双环”刚性构象,该构象涉及芳氧基丙醇胺质子化形式中的两个分子内氢键,以解释这些化合物和相关苯乙醇胺类似的β-肾上腺素受体活性。

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