Jeulin A C, Nicolaidis S
Laboratoire de Neurobiologie des Régulations, C.N.R.S. UA 637, Collège de France, Paris.
Brain Res Bull. 1988 Jun;20(6):817-23. doi: 10.1016/0361-9230(88)90097-4.
Extracellular recordings were obtained in anaesthetized rats from single neurons located in various structures around the rostral end of the third ventricle, known to harbour integrative neurons sensing deficiencies in and originating corrective responses for water-electrolyte balance. Once arginine vasopressin (AVP) responsive neurons were located, a selective antidiuretic agonist (binding to V2 receptors) and either V1 (pressor response related) or V2 (antidiuretic) antagonists were iontophoretically applied. Neurons in this region did not respond to the V2 agonist and only the V1 antagonist was able to block the response to AVP. It is assessed that the investigated region has neurons equipped only with receptors of the V1 type. Interestingly, a number of these neurons also responded to angiotensin II (AII), oxytocin and to blood pressure changes. The integrative neuronal population of parasagittal rostrodiencephalic neurons seem therefore to sense indices of haemodynamic changes including their neuro-hormonal signals within the brain such as AII and AVP which bind to V1 (pressor response related) receptors.
在麻醉大鼠中,从位于第三脑室头端周围不同结构的单个神经元进行细胞外记录,已知这些结构中含有感知水电解质平衡不足并引发纠正反应的整合神经元。一旦定位到精氨酸加压素(AVP)反应性神经元,就通过离子电泳施加选择性抗利尿激动剂(与V2受体结合)以及V1(与升压反应相关)或V2(抗利尿)拮抗剂。该区域的神经元对V2激动剂无反应,只有V1拮抗剂能够阻断对AVP的反应。据评估,所研究区域的神经元仅配备V1型受体。有趣的是,其中许多神经元也对血管紧张素II(AII)、催产素和血压变化有反应。因此,矢状旁头端脑神经元的整合神经元群体似乎能够感知血流动力学变化指标,包括大脑内的神经激素信号,如与V1(与升压反应相关)受体结合的AII和AVP。