Moguilewsky M, Fiet J, Tournemine C, Raynaud J P
J Steroid Biochem. 1986 Jan;24(1):139-46. doi: 10.1016/0022-4731(86)90043-9.
To improve the inhibition of prostate cancer growth obtained by surgical or chemical castration (estrogens or LHRH analogs), blockade of the action of residual androgens of adrenal origin has been proposed. Among antiandrogens acting through the androgen receptor (AR), the nonsteroid anandron (RU 23908) has several advantages over available compounds: megestrol acetate and cyproterone acetate, both steroids, bind substantially to other hormone receptors (progestin, gluco- and mineralocorticoid); and anandron binds only to AR. The nonsteroid flutamide is a prodrug converted to the active metabolite, hydroxyflutamide; anandron is well absorbed on oral administration of an active dose and intact compound disappears slowly from plasma. This may explain why, although in vitro anandron interacts very transiently with AR, in vivo a high level of untransformed anandron is present at the receptor site to induce its antiandrogenic activity. Animal experiments confirm that anandron can counteract the effect of adrenal androgens and inhibit the LHRH analog-induced initial increase in androgen ("flare-up"). Thus, in rats castrated either surgically or by buserelin or DES and supplemented with adrenal androgens (since endogenous adrenal secretion is very low in this species compared to man), anandron decreased prostate weight to control levels. The administration of buserelin to intact rats over 15 days resulted in a significant increase in prostate weight between Days 1 and 5. The addition of anandron to the buserelin inhibited this increase and, furthermore, led to a far greater decrease in prostate weight than that due to buserelin alone at 15 days, indicating a synergy of action.
为提高手术或药物去势(雌激素或促性腺激素释放激素类似物)对前列腺癌生长的抑制作用,有人提出阻断肾上腺来源的残余雄激素的作用。在通过雄激素受体(AR)发挥作用的抗雄激素药物中,非甾体类的阿南屈龙(RU 23908)相比于现有化合物具有多个优势:醋酸甲地孕酮和醋酸环丙孕酮这两种甾体类药物会大量结合其他激素受体(孕激素、糖皮质激素和盐皮质激素);而阿南屈龙仅与AR结合。非甾体类的氟他胺是一种前药,会转化为活性代谢产物羟基氟他胺;阿南屈龙口服有效剂量后吸收良好,完整的化合物在血浆中消失缓慢。这或许可以解释为什么尽管在体外阿南屈龙与AR的相互作用非常短暂,但在体内受体部位却存在高水平的未转化阿南屈龙以诱导其抗雄激素活性。动物实验证实,阿南屈龙可以抵消肾上腺雄激素的作用,并抑制促性腺激素释放激素类似物诱导的雄激素初始升高(“flare-up”)。因此,在通过手术、布舍瑞林或己烯雌酚去势并补充肾上腺雄激素的大鼠中(因为与人类相比,该物种的内源性肾上腺分泌非常低),阿南屈龙可将前列腺重量降至对照水平。对完整大鼠连续15天给予布舍瑞林,会导致第1天至第5天前列腺重量显著增加。在布舍瑞林中添加阿南屈龙可抑制这种增加,此外,在第15天时导致前列腺重量的下降幅度远大于单独使用布舍瑞林,表明存在协同作用。