Sakauye C, Feldman D
Am J Physiol. 1976 Jul;231(1):93-7. doi: 10.1152/ajplegacy.1976.231.1.93.
To investigate the mechanism of action of antimineralocorticoids, a series of spirolactone analogues was evaluated for both mineralocorticoid antagonist and agonist activity. Antagonist activity was assessed by inhibition of aldosterone stimulated sodium transport employing toad bladder short-circuit current (SCC) measurements. Agonist activity was assessed in the same system by the direct effect of spirolactones on SCC. Opening of the gamma-lactone ring of a spirolactone dramatically decreased antagonist activity in the compound studied. Several C-7 chi-substitutions resulted in either enhanced or diminished activity, whereas deletion of the C-10 methyl group (i.e., 19-nor compound) had only minimal effects on antagonist potency. Agonist activity was demonstrable for three of the analogues studied: the 19-nor compound, and those containing a C-7 chi-substitution with a carboxyl isopropyl ester or a C-6-7 cyclopropyl linkage. The functional activity in toad bladder was compared to previous measurements of the relative binding affinity of the same spirolactones for mineralocorticoid receptors in rat kidney. Although there was some correlation between binding to rat kidney receptors and antagonist activity in the toad bladder, the results did not coincide in the case of the three spirolactones that possessed partial agonist activity. Some of the discrepancy may have resulted from differences between mammalian and amphibian receptors; however, intrinsic agonist activity limits antagonist potency and thus may cause a divergence between binding and functional studies limited to antagonist activity alone. Binding affinity, although indicative of total activity, fails to distinguish agonist from antagonist potency.
为研究抗盐皮质激素的作用机制,对一系列螺内酯类似物的盐皮质激素拮抗剂和激动剂活性进行了评估。通过采用蟾蜍膀胱短路电流(SCC)测量法抑制醛固酮刺激的钠转运来评估拮抗剂活性。在同一系统中,通过螺内酯对SCC的直接作用来评估激动剂活性。在所研究的化合物中,螺内酯γ-内酯环的打开显著降低了拮抗剂活性。几种C-7位手性取代导致活性增强或减弱,而C-10甲基的缺失(即19-去甲化合物)对拮抗剂效力的影响极小。在所研究的三种类似物中表现出激动剂活性:19-去甲化合物,以及含有带有羧基异丙酯的C-7位手性取代或C-6-7环丙基连接的类似物。将蟾蜍膀胱中的功能活性与之前测量的相同螺内酯对大鼠肾脏盐皮质激素受体的相对结合亲和力进行了比较。尽管与大鼠肾脏受体的结合与蟾蜍膀胱中的拮抗剂活性之间存在一定相关性,但在具有部分激动剂活性的三种螺内酯的情况下,结果并不一致。部分差异可能源于哺乳动物和两栖动物受体之间的差异;然而,内在激动剂活性会限制拮抗剂效力,因此可能导致仅局限于拮抗剂活性的结合研究和功能研究之间产生分歧。结合亲和力虽然可指示总活性,但无法区分激动剂和拮抗剂效力。