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雄性大鼠垂体后叶催乳素释放和抑制活性的个体发生

Ontogeny of prolactin releasing and inhibiting activities in the posterior pituitary of male rats.

作者信息

Laudon M, Hyde J F, Ben-Jonathan N

机构信息

Department of Physiology and Biophysics, Indiana University School of Medicine, Indianapolis.

出版信息

Neuroendocrinology. 1989 Dec;50(6):644-9. doi: 10.1159/000125293.

Abstract

Plasma PRL levels in male rats are highest during the peripubertal period. We previously reported that the posterior pituitary (PP) contains a potent PRL-releasing factor (PRF), a trypsin-insensitive small peptide which is distinct from known PRL secretagogues. The objectives were to determine the ontogeny of PRF activity in the PP as well as age-related alterations in anterior pituitary responsiveness to PRF. We also explored if the PP contains a nondopaminergic PRL-inhibiting factor (PIF). PRF/PIF activities were assessed by the ability of PP extracts to alter PRL release from cultured anterior pituitary cells. The PP were extracted with perchloric acid and lyophilized, thus eliminating endogenous dopamine. PRF activity in PP extracts from 10- and 20 day-old (d) rats was very low, increased gradually in 30d and 40d rats, and remained unchanged in adult (90d) rats. In a second experiment, age-related changes in anterior pituitary responsiveness to PP extracts from adult rats and to TRH were determined. The responsiveness of anterior pituitary cells from 10d rats to PRF was low, increased dramatically in cells from 20d rats, and was reduced in cells from 30d and adult rats. The responsiveness to TRH was highest in cells from 10d rats. In a third experiment, anterior pituitary responsiveness to age-matched PP extracts was assessed. Only PIF activity was observed when PP extracts from 10d rats were incubated with anterior pituitary cells from 10d rats. In contrast, PP extracts from 20d, 30d and adult rats exhibited only PRF activity when incubated with age-matched cells.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

雄性大鼠血浆催乳素(PRL)水平在青春期前后最高。我们之前报道过,垂体后叶(PP)含有一种有效的PRL释放因子(PRF),一种对胰蛋白酶不敏感的小肽,它与已知的PRL促分泌剂不同。目的是确定PP中PRF活性的个体发生以及垂体前叶对PRF反应性的年龄相关变化。我们还探究了PP是否含有非多巴胺能的PRL抑制因子(PIF)。通过PP提取物改变培养的垂体前叶细胞PRL释放的能力来评估PRF/PIF活性。用高氯酸提取PP并冻干,从而消除内源性多巴胺。10日龄和20日龄大鼠PP提取物中的PRF活性非常低,在第30天和第40天的大鼠中逐渐增加,在成年(90日龄)大鼠中保持不变。在第二个实验中,确定了垂体前叶对成年大鼠PP提取物和促甲状腺激素释放激素(TRH)反应性的年龄相关变化。10日龄大鼠垂体前叶细胞对PRF的反应性较低,20日龄大鼠细胞中的反应性急剧增加,而30日龄和成年大鼠细胞中的反应性降低。对TRH的反应性在10日龄大鼠细胞中最高。在第三个实验中,评估了垂体前叶对年龄匹配的PP提取物的反应性。当10日龄大鼠的PP提取物与10日龄大鼠的垂体前叶细胞一起孵育时,仅观察到PIF活性。相反,当20日龄、30日龄和成年大鼠的PP提取物与年龄匹配的细胞一起孵育时,仅表现出PRF活性。(摘要截短于250字)

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