Wambach G, Casals-Stenzel J
Biochem Pharmacol. 1983 May 1;32(9):1479-85. doi: 10.1016/0006-2952(83)90469-0.
The ability of 18 steroids with structures similar to spironolactone, progesterone or aldosterone to compete with [3H]aldosterone for binding at rat renal cytosol receptors in vitro and the antialdosterone activity in vivo were tested in comparison with spironolactone. The affinity of these compounds for mineralocorticoid receptors was then compared with their pharmacological action in rats. Replacement of the 17-spirolactone ring by a 17 alpha-hydroxypropyl group and a 17 beta-hydroxyl group resulted in a loss of affinity for the [3H]aldosterone binding sites but not in a reduction in antialdosterone activity in vivo. Compared to spironolactone, C6/C7 unsaturated compounds showed a reduced activity both in vitro and in vivo. Substitution of the 7 alpha-thioacetyl group of spironolactone by a 6,7-methylene group in the beta position (prorenone) increased the affinity to the receptor as well as the biological activity by 52 and 41%, respectively. Introduction of a methyl-group at the D-ring of spironolactone resulted in similar significant drops in activity both in vitro and in vivo. The progesterone like steroids were weak competitors for aldosterone in vitro and in vivo. Two of three aldosterone like steroids (18-deoxyaldosterones) still exhibit mineralocorticoid activity and one analogue could be classified as a weak aldosterone antagonist. The studies show in general that the comparison of the affinity for mineralocorticoid receptor sites with the antimineralocorticoid activity in vivo is a valuable procedure in the search for new antimineralocorticoid substances.
测试了18种结构与螺内酯、孕酮或醛固酮相似的甾体化合物在体外与[3H]醛固酮竞争大鼠肾细胞质受体结合的能力以及体内抗醛固酮活性,并与螺内酯进行了比较。然后将这些化合物对盐皮质激素受体的亲和力与其在大鼠体内的药理作用进行了比较。用17α-羟丙基和17β-羟基取代17-螺内酯环导致对[3H]醛固酮结合位点的亲和力丧失,但体内抗醛固酮活性并未降低。与螺内酯相比,C6/C7不饱和化合物在体外和体内的活性均降低。将螺内酯的7α-硫代乙酰基在β位被6,7-亚甲基取代(孕烯酮),使受体亲和力和生物活性分别提高了52%和41%。在螺内酯的D环引入甲基导致体外和体内活性均显著下降。孕酮类甾体在体外和体内都是醛固酮的弱竞争者。三种醛固酮类甾体中的两种(18-脱氧醛固酮)仍表现出盐皮质激素活性,一种类似物可被归类为弱醛固酮拮抗剂。总体而言,这些研究表明,比较对盐皮质激素受体位点的亲和力与体内抗盐皮质激素活性是寻找新型抗盐皮质激素物质的一种有价值的方法。