Disturnal J E, Veale W L, Pittman Q J
Can J Physiol Pharmacol. 1987 Jan;65(1):30-5. doi: 10.1139/y87-006.
Arginine vasopressin is hypothesized to act as a neurotransmitter or neuromodulator in the ventral septal area of the rat brain. To examine this role of vasopressin further, it was applied by microiontophoresis or micropressure from multiple-barrelled micropipettes onto spontaneously active or glutamate-activated neurons. Applied in this manner, vasopressin reduced glutamate-evoked excitation in 32 of the 47 cells studied. Further, micropressure application of the vasopressin antagonist d(CH2)5Tyr(Me)AVP reversed the vasopressin effects. In contrast, administration of vasopressin had no effect on excitations evoked by acetylcholine iontophoresis or on the spontaneous activity of the majority of the ventral septal neurons studied. These observations suggest that vasopressin may be acting on a V1-like receptor on specific neurons in the ventral septal area as a modulator of glutamate actions. Evoked responses were also obtained in the same population of ventral septal cells following stimulation of a variety of limbic areas. Inhibitory input onto most of the vasopressin responsive neurons studied was obtained following electrical stimulation of the paraventricular nucleus and bed nucleus of the stria terminalis, two cell groupings that are potential sources of vasopressin to the ventral septal area. Thus, the similarity in action of exogenously applied vasopressin and the evoked responses following paraventricular nucleus and bed nucleus stimulation suggests that vasopressin may be a neurotransmitter in this pathway.
精氨酸加压素被假定在大鼠脑腹侧隔区作为一种神经递质或神经调质发挥作用。为了进一步研究加压素的这一作用,通过多管微量移液器以微离子电泳或微压力的方式将其施加到自发活动或谷氨酸激活的神经元上。以这种方式施加时,加压素在47个被研究细胞中的32个中降低了谷氨酸诱发的兴奋。此外,加压素拮抗剂d(CH2)5Tyr(Me)AVP的微压力施加逆转了加压素的作用。相反,加压素的施用对乙酰胆碱离子电泳诱发的兴奋或大多数被研究的腹侧隔区神经元的自发活动没有影响。这些观察结果表明,加压素可能作为谷氨酸作用的调节剂作用于腹侧隔区特定神经元上的一种V1样受体。在刺激各种边缘区域后,在同一群腹侧隔区细胞中也获得了诱发反应。在电刺激室旁核和终纹床核后,在大多数被研究的对加压素反应的神经元上获得了抑制性输入,这两个细胞群是腹侧隔区加压素的潜在来源。因此,外源性施加的加压素的作用与室旁核和终纹床核刺激后的诱发反应的相似性表明,加压素可能在这条通路中是一种神经递质。