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肾上腺素能药物。8.1某些3-叔丁氨基-2-(取代苯基)-1-丙醇的合成及β-肾上腺素能激动剂活性

Adrenergic agents. 8.1 Synthesis and beta-adrenergic agonist activity of some 3-tert-butylamino-2-(substituted phenyl)-1-propanols.

作者信息

Jen T, Frazee J S, Schwartz M S, Erhard K F, Kaiser C

出版信息

J Med Chem. 1977 Oct;20(10):1263-8. doi: 10.1021/jm00220a007.

Abstract

Replacement of the benzylic hydroxyl group of N-tert-butylnorepinephrine with a hydroxymethyl substituent affords a propanolamine homologue which retains a high degree of beta-adrenergic agonist activity. As modification of the meta substituent of catecholic ethanolamines, such as N-tert-butylnorepinephrine, often provides compounds that exert a more pronounced effect in relaxing tracheobronchial smooth muscle (beta2-adrenergic agonist) than in stimulating cardiac muscle (beta1-adrenergic response), a series of 3-tert-butylamino-2-(3-substituted 4-hydroxyphenyl)-1-propanols was prepared. The 3-meta substituents included HOCH2 (1b), H2NCONH (1c), MeSO2NH (1d), H (le), and NH2 (1f). These phenylpropanolamine derivatives were compared with their phenylethanolamine counterparts in in vitro tests that measure the ability of these compounds to relax spontaneously contracted guinea pig tracheal smooth muscle (a measure of potential bronchodilating activity) and to increase the rate of contraction of a spontaneously beating guinea pig right atrial preparation (an indicator of potential cardiac stimulating activity). In these tests all of the propanolamine derivatives included in the study were less potent than their ethanolamine relatives. In both series replacement of the catecholic m-hydroxyl group with the indicated substituents usually resulted in compounds with increased selectivity for tracheobronchial vs. cardiac muscle.

摘要

用羟甲基取代N-叔丁基去甲肾上腺素的苄基羟基可得到一种丙醇胺同系物,该同系物保留了高度的β-肾上腺素能激动剂活性。由于对儿茶酚乙醇胺(如N-叔丁基去甲肾上腺素)间位取代基的修饰通常会产生一些化合物,这些化合物在舒张气管支气管平滑肌(β2-肾上腺素能激动剂)方面比刺激心肌(β1-肾上腺素能反应)方面具有更显著的效果,因此制备了一系列3-叔丁基氨基-2-(3-取代-4-羟基苯基)-1-丙醇。3-间位取代基包括HOCH2(1b)、H2NCONH(1c)、MeSO2NH(1d)、H(1e)和NH2(1f)。在体外试验中,将这些苯丙醇胺衍生物与其苯乙醇胺对应物进行了比较,该试验测量这些化合物舒张自发收缩的豚鼠气管平滑肌的能力(潜在支气管扩张活性的一种度量)以及增加豚鼠右心房自发搏动制备物收缩速率的能力(潜在心脏刺激活性的一个指标)。在这些试验中,研究中包括的所有丙醇胺衍生物的效力均低于其乙醇胺同类物。在这两个系列中,用指定取代基取代儿茶酚间位羟基通常会产生对气管支气管与心肌具有更高选择性的化合物。

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