Kaiser C, Schwartz M S, Colella D F, Wardell J R
J Med Chem. 1975 Jul;18(7):674-83. doi: 10.1021/jm00241a006.
The m-phenolic group of catecholamine beta-adrenergic agonists may be replaced by various functionalities capable of undergoing H bonding. Considerable latitude in the nature of the OH simulating group is permissible with retention of activity; however, the most extensively studied analogs are ones in which a mobile proton is attached to an O or N atom. In a search for new selective bronchodilators a series of catecholamine analogs bearing a substituted sulfonyl or sulfonylalkyl group in the meta position (i.e., groups in which the mobile H is attached to a C atom) was examined. These compounds were studied for beta-adrenergic agonist activity in vitro by measuring their ability to relax tracheal smooth muscle and to increase the rate of spontaneously beating right atria of guinea pigs. Adrenergic activity was influenced by the nature of the alkylene bridge between the sulfonyl and aromatic groups, branching of the ethanolamine side chain, stereochemistry, and substitution of the sulfonyl and amino groups. Beta-adrenergic blockage was noted for some compounds having the sulfonyl attached directly to the ring. Greatest beta-adrenergic agonist potency and tissue selectivity was observed with a m-MeSO2CH2 substituent. One of these compounds, alpha-[[(1,1-dimethylethyl)amino]methyl]-4-hydroxy-3-[(methylsulfonyl)methyl]benzenemethanol hydrochloride (sulfonterol hydrochloride, USAN), was studied more extensively in animals and is presently being examined for bronchodilator activity in man.
儿茶酚胺β-肾上腺素能激动剂的间位酚羟基可被各种能够形成氢键的官能团取代。模拟羟基的性质在很大范围内变动时仍可保持活性;然而,研究最为广泛的类似物是那些可移动质子连接在氧或氮原子上的化合物。为了寻找新型选择性支气管扩张剂,人们研究了一系列在间位带有取代磺酰基或磺酰烷基的儿茶酚胺类似物(即其中可移动氢连接在碳原子上的基团)。通过测量这些化合物舒张气管平滑肌的能力以及提高豚鼠右心房自发搏动速率的能力,对其体外β-肾上腺素能激动剂活性进行了研究。肾上腺素能活性受磺酰基与芳基之间亚烷基桥的性质、乙醇胺侧链的分支情况、立体化学以及磺酰基和氨基取代情况的影响。对于一些磺酰基直接连接在环上的化合物,观察到了β-肾上腺素能阻断作用。带有间位甲磺酰基甲基取代基时,β-肾上腺素能激动剂的效力和组织选择性最强。其中一种化合物,α-[[(1,1-二甲基乙基)氨基]甲基]-4-羟基-3-[(甲基磺酰基)甲基]苯甲醇盐酸盐(盐酸磺托罗,美国采用名称),在动物身上进行了更广泛的研究,目前正在对其在人体中的支气管扩张活性进行研究。