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重新审视多巴胺作为催乳素释放抑制因子(PIF):多巴胺要发挥生理性PIF的作用可能需要辅助剂。

Reexamination of dopamine as the prolactin-release inhibiting factor (PIF): supplementary agent may be required for dopamine to function as the physiological PIF.

作者信息

Shin S H, Hanna S F, Hong M, Jhamandas K

机构信息

Department of Physiology, Queen's University, Kingston, Ont., Canada.

出版信息

Can J Physiol Pharmacol. 1990 Sep;68(9):1226-30. doi: 10.1139/y90-184.

Abstract

A large number of studies have been performed concerning dopamine's inhibitory effect on prolactin release, but many of these studies have examined the effect of dopamine dissolved in a solution containing ascorbic acid. Ascorbic acid, routinely used to protect dopamine from oxidation, alone does not stimulate or inhibit prolactin release, but it can potentiate the inhibitory effect of dopamine in a static monolayer culture system by approximately 100 times. We have closely examined the inhibitory effect of dopamine on prolactin release in the absence of ascorbic acid using a perifusion system. Male rat adenohypophyses were dispersed with trypsin and cultured in a Petri dish to form cell clusters. Inhibition of prolactin release by dopamine (1 mumol/L) in the absence of ascorbic acid was sustained for only 63 min during the 2-h perifusion period. Following a 2-h period of incubation of dopamine in the same experimental solution, the dopamine concentration was reduced from 1 to 0.18 mumol/L, yet this "2-h-old dopamine" was still effective in inhibiting prolactin release (approximately 30 min). This result suggests that the lactotrophs may be desensitized by chronic exposure to a high concentration of dopamine in the absence of ascorbic acid. In contrast, when a low concentration of dopamine (3 nmol/L) containing ascorbic acid (0.1 mmol/L) was perifused, inhibition of prolactin release was sustained for the entire 2-h perifusion period. Although there may be a large number of explanations for dopamine's transient inhibitory effect on prolactin release, the present results suggest that dopamine may require supplementary agent(s) to effectively inhibit prolactin release and thus function as the prolactin release inhibitory factor (PIF).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

关于多巴胺对催乳素释放的抑制作用已进行了大量研究,但其中许多研究考察的是溶解于含抗坏血酸溶液中的多巴胺的作用。抗坏血酸常用于保护多巴胺不被氧化,其本身不会刺激或抑制催乳素释放,但在静态单层培养系统中,它可使多巴胺的抑制作用增强约100倍。我们使用灌流系统,在无抗坏血酸的情况下,仔细研究了多巴胺对催乳素释放的抑制作用。雄性大鼠垂体前叶用胰蛋白酶分散后,培养于培养皿中形成细胞团。在2小时的灌流期内,无抗坏血酸时,多巴胺(1μmol/L)对催乳素释放的抑制作用仅持续63分钟。在相同实验溶液中,多巴胺孵育2小时后,其浓度从1μmol/L降至0.18μmol/L,但这种“2小时的多巴胺”仍能有效抑制催乳素释放(约30分钟)。该结果表明,在无抗坏血酸的情况下,乳腺营养细胞可能因长期暴露于高浓度多巴胺而脱敏。相比之下,当灌流含抗坏血酸(0.1mmol/L)的低浓度多巴胺(3nmol/L)时,催乳素释放的抑制作用在整个2小时灌流期内持续存在。尽管对于多巴胺对催乳素释放的短暂抑制作用可能有多种解释,但目前的结果表明,多巴胺可能需要辅助剂才能有效抑制催乳素释放,从而发挥催乳素释放抑制因子(PIF)的作用。(摘要截选至250字)

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