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水电解质失衡和激素协同作用对第三脑室前壁周围神经元的汇聚投射。

Converging projections of hydromineral imbalances and hormonal co-action upon neurons surrounding the anterior wall of the third ventricle.

作者信息

Nicolaidis S, Jeulin A C

出版信息

J Physiol (Paris). 1984;79(6):406-15.

PMID:6399308
Abstract

Various structures have been found in the anterior third periventricular area (A3pV) which seem to be concerned with hydromineral imbalances, since they contain neurons which can sense changes in osmolality, blood volume, blood pressure, angiotensin II [Ang II] levels and temperature. These neurons also seem to be concerned with the setting in action of corrective responses at an autonomic or behavioural level. The discovery of neurons in this area that respond to more than one signal (for example osmotic and volaemic, or blood pressure and Ang II levels) suggested that this area has an integrative role. More recent findings from stimulation and lesion experiments have shown that the broadly inter-connected A3pV structures which extend from the region of the suprachiasmatic nucleus to the subfornical organ (SFO), are targets for many stimuli. Our recent electrophysiological data have strengthened the idea of an integrative role for A3pV structures. Iontophoretic application of various substances has shown that a single baro-sensitive neuron can have its firing modulated by Ang II. In the present paper we report the discovery of A3pV neurons which respond to both Ang II and vasopressin (VP). Furthermore the co-action of these two hormones may be subtractive, additive or even potentiating depending on conditions. It appears that, in addition to detecting hydromineral imbalances, the A3pV neurons can sense the presence of at least two sister hormones which can co-modulate their responsiveness.

摘要

在第三脑室前区(A3pV)发现了各种结构,这些结构似乎与水电解质平衡失调有关,因为它们包含能感知渗透压、血容量、血压、血管紧张素II [Ang II] 水平和温度变化的神经元。这些神经元似乎还与自主或行为水平的纠正反应的启动有关。在该区域发现对不止一种信号(例如渗透压和血容量,或血压和Ang II水平)有反应的神经元,表明该区域具有整合作用。最近来自刺激和损伤实验的结果表明,从视交叉上核区域延伸至穹窿下器(SFO)的广泛相互连接的A3pV结构是许多刺激的靶点。我们最近的电生理数据强化了A3pV结构具有整合作用的观点。通过离子电泳施加各种物质表明,单个压力敏感神经元的放电可被Ang II调节。在本文中,我们报告了对Ang II和血管加压素(VP)均有反应的A3pV神经元的发现。此外,根据具体情况,这两种激素的共同作用可能是相减、相加甚至增强的。看来,除了检测水电解质平衡失调外,A3pV神经元还能感知至少两种可共同调节其反应性的姐妹激素的存在。

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