Tagliaferro P, Ramos A J, López-Costa J J, López E M, Saavedra J P, Brusco A
Instituto de Biología Celular y Neurociencia "Prof. Eduardo De Robertis", Facultad de Medicina, Universidad de Buenos Aires, Paraguay, Buenos Aires, Argentina.
Brain Res Bull. 2001 Jan 15;54(2):199-205. doi: 10.1016/s0361-9230(00)00450-0.
Serotonin (5HT) containing cell bodies are localized in mesencephalic and rhombencephalic raphe nuclei. It has been proposed that 5HT could be involved in neuronal development and plasticity. In the central nervous system, nitric oxide (NO) has been postulated as a neurotransmitter and neuromodulator, and has been implicated in neurotoxicity as well as in neuroprotection. Using the nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d) technique, NO synthesizing neurons were described in raphe nuclei. By immunohistochemistry, nitric oxide synthase (NOS) was found colocalized with 5HT in some dorsal raphe nucleus (DRN) neurons. In a model of inhibition of 5HT synthesis produced by daily administration of parachlorophenilalanine during 14 days, we have studied the relationship between 5HT and NO systems after 5HT depletion by histochemical and immunocytochemical methods. After the treatment, we observed an important reduction of 5HT immunostaining in the DRN and enhanced NOS activity demonstrated by NADPH-d technique, especially in the dorsomedial and ventromedial subgroups. In spite of the increased NOS activity, we could not observe significant changes in the NOS-immunoreactivity in the DRN after 5HT depletion. These results could indicate that 5HT depletion is concomitant with changes in NOS activity without affecting NOS expression in the DRN.
含5-羟色胺(5HT)的细胞体位于中脑和后脑的中缝核。有人提出5HT可能参与神经元发育和可塑性。在中枢神经系统中,一氧化氮(NO)被假定为一种神经递质和神经调质,并与神经毒性以及神经保护作用有关。利用烟酰胺腺嘌呤二核苷酸磷酸黄递酶(NADPH-d)技术,在中缝核中描述了合成NO的神经元。通过免疫组织化学发现,一氧化氮合酶(NOS)在一些中缝背核(DRN)神经元中与5HT共定位。在一个通过连续14天每日给予对氯苯丙氨酸抑制5HT合成的模型中,我们通过组织化学和免疫细胞化学方法研究了5HT耗竭后5HT与NO系统之间的关系。治疗后,我们观察到DRN中5HT免疫染色显著减少,并且通过NADPH-d技术显示NOS活性增强,尤其是在背内侧和腹内侧亚组。尽管NOS活性增加,但在5HT耗竭后,我们未观察到DRN中NOS免疫反应性有显著变化。这些结果可能表明5HT耗竭与NOS活性变化同时发生,而不影响DRN中NOS的表达。