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利血平和对氯苯丙胺对蛱蝶(鳞翅目)脑神经节中5-羟色胺代谢及释放的影响

Effects of reserpine and p-chloroamphetamine on 5-HT metabolism and release in the cerebral ganglia of Inachis io (Lepidoptera).

作者信息

Vieira R, Mancebo M J, Aldegunde M

机构信息

Laboratorio de Fisiología Animal (Departamento de Fisiología), Facultad de Biología, Universidad de Santiago de Compostela, E-15782 Santiago de Compostela, Spain.

出版信息

J Physiol Biochem. 2007 Jun;63(2):129-41. doi: 10.1007/BF03168224.

Abstract

There have been few pharmacological studies of serotonergic system dynamics in insects. A more precise knowledge of the response of serotonergic neurons to drugs will contribute to understanding of the role of this neurotransmitter in insect behaviour. The present work was carried out to study several aspects of serotonin (5-HT) metabolism and release in an insect, the butterfly Inachis io. The effects of a single intra-abdominal injection of reserpine (30 pg/insect) or p-chloroamphetamine (50 microg/insect) on cerebral ganglia 5-HT metabolism and release were studied. After reserpine injection a depletion of 5-HT stores concomitant with an increase in N-acetylserotonin levels was observed, but not significant alteration of extraneuronal 5-HT release was observed. Administration of p-chloroamphetamine (PCA) induced extraneuronal 5-HT release, together with inhibition of its reuptake. Finally, a single injection of p-chloroamphetamine in reserpine-treated insects was able to induce new release of 5-HT. Reserpine interferes with the vesicular storage of 5-HT, but does not affect the process of neuronal release, while PCA induces the synaptic release of 5-HT and inhibits its reuptake. These effects are similar to those observed in mammals.

摘要

关于昆虫5-羟色胺能系统动力学的药理学研究很少。更精确地了解5-羟色胺能神经元对药物的反应将有助于理解这种神经递质在昆虫行为中的作用。本研究旨在探讨蝴蝶蛱蝶(Inachis io)体内血清素(5-HT)代谢和释放的几个方面。研究了单次腹腔注射利血平(30 pg/昆虫)或对氯苯丙胺(50 μg/昆虫)对脑神经节5-HT代谢和释放的影响。注射利血平后,观察到5-HT储备减少,同时N-乙酰血清素水平升高,但未观察到神经外5-HT释放有明显变化。给予对氯苯丙胺(PCA)可诱导神经外5-HT释放,并抑制其再摄取。最后,在经利血平处理的昆虫中单次注射对氯苯丙胺能够诱导5-HT的新释放。利血平干扰5-HT的囊泡储存,但不影响神经元释放过程,而PCA诱导5-HT的突触释放并抑制其再摄取。这些作用与在哺乳动物中观察到的相似。

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