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3H-螺哌隆与大鼠垂体各叶的特异性体内结合。多巴胺受体标记的证据。

Specific in vivo binding of 3H-spiperone to individual lobes of the pituitary gland of the rat. Evidence for the labelling of dopamine receptors.

作者信息

Köhler C, Fahlberg K

出版信息

J Neural Transm. 1985;63(1):39-52. doi: 10.1007/BF01249583.

Abstract

The in vivo binding of 3H-spiperone to individual lobes of the pituitary gland was studied after intravenous injections in unanesthetized male rats. The binding was found to be saturable and reversible. The percentage of total binding of 3H-spiperone that was specific binding was highest in the intermediate (approximately equal to 75%) and lowest in the posterior (approximately equal to 35%) lobes. The regional distribution of 3H-spiperone binding 1 hour after injections was the following: intermediate greater than anterior greater than posterior. Pharmacological analysis of the in vivo 3H-spiperone binding showed that dopamine agonists (e.g. bromocriptine, N-n-propylnorapomorphine) and antagonists could prevent the in vivo binding of 3H-spiperone in all three parts of the gland. The substituted benzamide drugs remoxipride and raclopride blocked the in vivo 3H-spiperone binding in the anterior and intermediate lobes but did not reduce the 3H-spiperone binding in the posterior part, except when given in very high doses. Taken together, the present study has shown that 3H-spiperone can be used in studies of the dopamine receptors in the anterior, intermediate and posterior lobes of the pituitary gland, but the proportion of non-specific binding is higher than in the striatum. The use of in vivo 3H-spiperone binding may thus be a useful method to study the regulation and pharmacology of these receptors in situ.

摘要

在未麻醉的雄性大鼠静脉注射后,研究了³H-螺哌隆在垂体各叶的体内结合情况。发现这种结合具有饱和性和可逆性。³H-螺哌隆总结合中特异性结合的百分比在中间叶最高(约等于75%),在垂体后叶最低(约等于35%)。注射后1小时³H-螺哌隆结合的区域分布如下:中间叶大于前叶大于后叶。对³H-螺哌隆体内结合的药理学分析表明,多巴胺激动剂(如溴隐亭、N-正丙基去甲阿扑吗啡)和拮抗剂可阻止³H-螺哌隆在腺体所有三个部分的体内结合。取代苯甲酰胺类药物瑞莫必利和雷氯必利可阻断³H-螺哌隆在前叶和中间叶的体内结合,但除了给予非常高的剂量外,不会降低³H-螺哌隆在后叶的结合。综上所述,本研究表明³H-螺哌隆可用于研究垂体前叶、中间叶和后叶的多巴胺受体,但非特异性结合的比例高于纹状体。因此,³H-螺哌隆体内结合的应用可能是一种原位研究这些受体调节和药理学的有用方法。

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