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化学诱导肥胖小鼠和基因肥胖小鼠中催乳素与生长激素的分泌

Prolactin and growth hormone secretion in chemically induced and genetically obese mice.

作者信息

Sinha Y N, Salocks C B, Vanderlaan W P

出版信息

Endocrinology. 1975 Dec;97(6):1386-93. doi: 10.1210/endo-97-6-1386.

Abstract

Experiments were performed to determine PRL and GH concentrations in mice rendered obese by chemical means and to compare these concentrations with those of mice obese as a result of genetic mutation. Basal levels of serum PRL and GH were generally lower in gold thioglucose (GTG) and bipiperidyl mustard (BPM)-treated obese mice compared with lean controls. In the pituitary gland, the hormonal changes varied from lower or unchanged levels of PRL and GH shortly after drug injection to very high concentrations of PRL (but not of GH) a year later. However, when the mice were challenged with perphenazine, a drug that causes prompt release of PRL, GTG and BPM-obese mice released 2-5 times as much PRL as did lean controls, suggesting an impairment in the hypothalamic control of PRL secretion in GTG/BPM-obese mice. Basal levels of PRL and GH in genetically obese (ob/ob) mice of both sexes were also lower than those in their lean relatives (?/+). This was true for both serum and pituitary concentrations of the two hormones, the only exception being pituitary GH concentrations in females which were higher than or equal to those of controls. However, unlike GTG and BPM-obese mice, genetically obese mice released very little PRL compared with their lean relatives when stimulated with perphenazine, which suggested an insufficiency of pituitary function in ob/ob mice. The results demonstrate abnormalities in the secretion of PRL and GH in obese mice of both types.

摘要

进行实验以测定通过化学方法致胖的小鼠体内催乳素(PRL)和生长激素(GH)的浓度,并将这些浓度与因基因突变而肥胖的小鼠的浓度进行比较。与瘦对照组相比,硫代葡萄糖金(GTG)和双哌啶基芥子气(BPM)处理的肥胖小鼠血清PRL和GH的基础水平通常较低。在垂体中,激素变化从药物注射后不久PRL和GH水平降低或不变,到一年后PRL浓度非常高(但GH浓度没有变化)。然而,当用能迅速释放PRL的奋乃静对小鼠进行刺激时,GTG和BPM肥胖小鼠释放的PRL是瘦对照组的2至5倍,这表明GTG/BPM肥胖小鼠下丘脑对PRL分泌的控制存在损害。两性基因肥胖(ob/ob)小鼠的PRL和GH基础水平也低于它们的瘦亲属(?/+)。两种激素的血清和垂体浓度都是如此,唯一的例外是雌性垂体GH浓度高于或等于对照组。然而,与GTG和BPM肥胖小鼠不同,基因肥胖小鼠在用奋乃静刺激时,与它们的瘦亲属相比释放的PRL很少,这表明ob/ob小鼠垂体功能不足。结果表明两种类型的肥胖小鼠中PRL和GH的分泌均存在异常。

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