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5-羟色胺介导的雄性和雌性大鼠行为

5-Hydroxytryptamine-mediated behaviour in male and female rats.

作者信息

Dickinson S L, Curzon G

出版信息

Neuropharmacology. 1986 Jul;25(7):771-6. doi: 10.1016/0028-3908(86)90094-8.

Abstract

The responses of male and female rats to drugs causing the behavioural syndrome induced by 5-hydroxytryptamine (5-HT) were compared. Preliminary experiments showed that females had largely similar responses to the releaser of 5-HT, p-chloroamphetamine (PCA) and the 5-HT receptor agonist 5-methoxy-N,N-dimethyltryptamine (5-MeODMT) at different stages of the oestrus cycle. The behavioural responses to 5-MeODMT (with and without the monoamine oxidase inhibitor pargyline) or to p-chloroamphetamine were not significantly different to those of males except for tremor after p-chloroamphetamine which was more marked in the females. However, concentrations of p-chloroamphetamine in brain in these animals, when killed immediately after behavioural recording were greater in the females. When rats, pretreated with the monoamine oxidase inhibitor, pargyline, were given the precursor of 5-HT, tryptophan, the females showed substantially greater hypothermia and larger scores for components of the 5-HT syndrome than the males. This sex difference may have been due to the moderately but significantly higher levels of 5-HT (and possibly tryptamine) in brain attained by the female rats, than by similarly-treated males. The results as a whole therefore suggest that the greater behavioural response of female rats to pargyline and tryptophan reflects a greater effect of this treatment on the synthesis of indoleamines than that occurring in males.

摘要

比较了雄性和雌性大鼠对导致由5-羟色胺(5-HT)诱发行为综合征的药物的反应。初步实验表明,在发情周期的不同阶段,雌性大鼠对5-HT释放剂对氯苯丙胺(PCA)和5-HT受体激动剂5-甲氧基-N,N-二甲基色胺(5-MeODMT)的反应基本相似。除了对氯苯丙胺后的震颤在雌性中更明显外,雌性大鼠对5-MeODMT(有无单胺氧化酶抑制剂优降宁)或对氯苯丙胺的行为反应与雄性大鼠没有显著差异。然而,在行为记录后立即处死的这些动物中,雌性大鼠大脑中的对氯苯丙胺浓度更高。当用单胺氧化酶抑制剂优降宁预处理的大鼠给予5-HT前体色氨酸时,雌性大鼠表现出比雄性大鼠明显更大的体温过低和5-HT综合征各成分的更高得分。这种性别差异可能是由于雌性大鼠大脑中5-HT(可能还有色胺)的水平适度但显著高于同样处理的雄性大鼠。因此,总体结果表明,雌性大鼠对优降宁和色氨酸的更大行为反应反映了这种处理对吲哚胺合成的影响比雄性大鼠更大。

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