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利血平对多巴胺、溴隐亭和阿扑吗啡在体外抑制不同垂体结构释放催乳素的影响。

Effect of reserpine on the inhibition of prolactin released from different pituitary constructs in vitro by dopamine, bromocriptine and apomorphine.

作者信息

Dutt A, Juneja H S

机构信息

Division of Neuroendocrinology, Institute for Research in Reproduction (ICMR), Parel, Bombay, India.

出版信息

Endocr Res. 1992;18(4):307-20. doi: 10.1080/07435809209111039.

Abstract

Hourly release of Prolactin by pituitary constructs 1 whole pituitary (PI), adenohypophysis (P-N) and pituitary-hypothalamus co-incubate (PHC) were compared. Adenohypophysis secreted significantly more prolactin than PI and PHC, while PHC secreted significantly less than PI. Co-incubation of (P-N) with posterior pituitary reduced the elevated secretion of prolactin. Addition of dopamine (10(-7) M), bromocriptine (10(-7) M) and apomorphine (5 x 10(-8) M) to these constructs did not affect the release of prolactin from PI but inhibited the same from (P-N) and PHC. Treatment with reserpine increased serum prolactin levels but intrapituitary prolactin contents were decreased. Hourly release of prolactin from pituitary constructs derived from reserpine-treated rats was significantly reduced as compared to ascorbic acid--treated controls. Inclusion of dopamine (10(-7) M), bromocriptine (10(-7) M) and apomorphine (5 x 10(-8) M) in these constructs inhibited prolactin secretion further. In vitro addition of perphenazine stimulated the release of prolactin by PHC but was without any effect on PI and (P-N). The data are interpreted to suggest that dopamine in posterior pituitary may be an important determinant of hypothalamic modulation of prolactin secretion.

摘要

比较了垂体结构(1个完整垂体(PI)、腺垂体(P-N)和垂体-下丘脑共同孵育物(PHC))中催乳素的每小时释放量。腺垂体分泌的催乳素明显多于PI和PHC,而PHC分泌的催乳素明显少于PI。(P-N)与垂体后叶共同孵育可降低升高的催乳素分泌。向这些结构中添加多巴胺(10^(-7) M)、溴隐亭(10^(-7) M)和阿扑吗啡(5×10^(-8) M)对PI中催乳素的释放没有影响,但抑制了(P-N)和PHC中催乳素的释放。利血平处理可增加血清催乳素水平,但垂体催乳素含量降低。与抗坏血酸处理的对照组相比,利血平处理大鼠的垂体结构中催乳素的每小时释放量明显降低。在这些结构中加入多巴胺(10^(-7) M)、溴隐亭(10^(-7) M)和阿扑吗啡(5×10^(-8) M)可进一步抑制催乳素分泌。体外添加奋乃静可刺激PHC释放催乳素,但对PI和(P-N)没有任何影响。这些数据表明,垂体后叶中的多巴胺可能是下丘脑调节催乳素分泌的一个重要决定因素。

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