Hery F, Faudon M, Ternaux J P
Brain Res Bull. 1982 Feb;8(2):123-9. doi: 10.1016/0361-9230(82)90038-7.
The release of 3H-serotonin (3H-5-HT) endogenously synthesized from 3H-tryptophan was estimated in both dorsalis and magnus (MRN) raphe nuclei of anaesthetized "encéphale isolé" cats, by using push-pull cannulae. Resting steady state in the release of 3H-5-HT was observed 30 min after the beginning of superfusion with L-3H-tryptophan. The amounts of 3H-5-HT released in the DRN and the MRN are much greater than those measured simultaneously in the caudate nucleus. A marked increase either in the 5-HT release was seen in the presence of fluoxetine, a potent reuptake blocker of 5-HT, or during local depolarization with potassium chloride. The spontaneous release was diminished by removing Ca++ and by adding cobalt to the medium. Tetrodotoxin (TTX) decreased the 5-HT release in the DRN and, based on previously established, blocked the stimulating effect of batrachotoxin. According to the pharmacological characteristics of the monoamine dendritic release determined for dopamine in the substantia nigra [17], our results suggest that 5-HT release processes in the DRN correspond to a release from nerve endings, not from dendrites. The purpose of this study was to determine if the 5-HT released in the DRN is released from either axon terminals or dendrites. Morphological studies performed on the DRN do not consistently demonstrate the high density of serotoninergic varicosities in the DRN. In addition, two types of 5-HT axonal varicosities, characterized by their synaptic or non-synaptic junctions, are present in the brain. The concept that the quantities of 5-HT released could vary from one type compared to the other is discussed.
通过使用推挽式套管,对麻醉的“孤立脑”猫的背侧和中缝大核(MRN)中由3H-色氨酸内源性合成的3H-血清素(3H-5-HT)的释放进行了估计。在用L-3H-色氨酸开始超灌注30分钟后,观察到3H-5-HT释放的静息稳态。中缝背核(DRN)和中缝大核中释放的3H-5-HT量远大于同时在尾状核中测得的量。在强效5-HT再摄取阻滞剂氟西汀存在下或在用氯化钾进行局部去极化期间,5-HT释放均显著增加。去除Ca++并向培养基中添加钴可减少自发释放。河豚毒素(TTX)减少了DRN中的5-HT释放,并根据先前确定的结果,阻断了蛙毒素的刺激作用。根据对黑质中多巴胺确定的单胺树突状释放的药理学特征,我们的结果表明DRN中的5-HT释放过程对应于从神经末梢而非树突的释放。本研究的目的是确定DRN中释放的5-HT是从轴突终末还是从树突释放。对DRN进行的形态学研究并未始终如一地证明DRN中5-羟色胺能曲张体的高密度。此外,大脑中存在两种类型的5-HT轴突曲张体,其特征在于它们的突触或非突触连接。讨论了与另一种类型相比,释放的5-HT量可能不同的概念。