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抑制素参与对青春期前及成年雄性和雌性大鼠促卵泡激素浓度的调节。

Involvement of inhibin in the regulation of follicle-stimulating hormone concentrations in prepubertal and adult, male and female rats.

作者信息

Hermans W P, van Leeuwen E C, Debets M H, de Jong F H

出版信息

J Endocrinol. 1980 Jul;86(1):79-92. doi: 10.1677/joe.0.0860079.

Abstract

Administration of steroid-free bovine follicular fluid (bFF), containing inhibin-like activity, depressed levels of FSH measured 4 h after injection in intact adult and 35-day-old female rats, but not in younger females. Suppression of FSH was also observed in intact male rats, aged 55 days, but not in older and younger male rats. Eight hours after injection of bFF, FSH levels were depressed in 15-day-old and older immature and adult rats of both sexes. Male and female rats, gonadectomized 2 days earlier, responded similarly to bFF treatment as did the intact animals. In a second experiment it was found that the rise of FSH levels, occurring within 8 h of gonadectomy, decreased with age in male and increased with age in female rats. Steroid treatment was found to prevent the rise in FSH levels partially in 15-day-old male and completely 25-day-old female rats, whereas treatment with bFF was fully effective in blocking the FSH rise in both immature and adult rats of both sexes. It is concluded that inhibin might be a major physiological factor in a fast-acting control of FSH concentrations from at least the age of 25 days onwards in female rats. In male rats its physiological significance might be limited to the prepubertal period, despite the fact that pituitary secretion of FSH is suppressed by exogenous inhibin-like activity at all ages studied.

摘要

注射不含类固醇的具有抑制素样活性的牛卵泡液(bFF)后,成年雌性大鼠和35日龄雌性大鼠在注射后4小时测量的促卵泡激素(FSH)水平降低,但年幼雌性大鼠中未出现这种情况。在55日龄的成年雄性大鼠中也观察到FSH受到抑制,但年龄较大和较小的雄性大鼠中未出现。注射bFF 8小时后,15日龄及以上的未成熟和成年雌雄大鼠的FSH水平均降低。提前2天进行性腺切除的雄性和雌性大鼠对bFF处理的反应与完整动物相似。在第二项实验中发现,性腺切除后8小时内FSH水平的升高在雄性大鼠中随年龄降低,在雌性大鼠中随年龄升高。发现类固醇处理可部分阻止15日龄雄性大鼠FSH水平的升高,并完全阻止25日龄雌性大鼠FSH水平的升高,而bFF处理在阻止未成熟和成年雌雄大鼠FSH水平升高方面均完全有效。得出的结论是,抑制素可能是至少从25日龄起对雌性大鼠FSH浓度进行快速控制的主要生理因素。在雄性大鼠中,其生理意义可能仅限于青春期前阶段,尽管在所研究的所有年龄段,垂体FSH的分泌都受到外源性抑制素样活性的抑制。

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