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蓝斑核激活诱发腹前丘脑核内去甲肾上腺素的释放:一项电化学研究。

In vivo noradrenaline release evoked in the anteroventral thalamic nucleus by locus coeruleus activation: an electrochemical study.

作者信息

Brun P, Suaud-Chagny M F, Gonon F, Buda M

机构信息

INSERM U 171, Centre Hospitalier Lyon-Sud, Pierre Benite, France.

出版信息

Neuroscience. 1993 Feb;52(4):961-72. doi: 10.1016/0306-4522(93)90543-o.

Abstract

The anteroventral thalamic nucleus is innervated by noradrenergic terminals exclusively originating in the locus coeruleus, a densely packed cell group located in the dorsotegmental part of the pons. In urethane-anaesthetized rats, electrical stimulations of locus coeruleus axons (dorsal noradrenergic bundle; 14 Hz, 20 s) evoked a rapid increase in the signal (catechol oxidation current) measured within the anteroventral thalamic nucleus by the use of carbon fibre electrodes combined with electrochemistry. This effect was reproducible and immediately reversible. Evoked changes in this current were found to be due to oxidation of noradrenaline released from terminals. The amplitude of the evoked noradrenaline release varied non-linearly with the frequency of stimulation. We investigated the influence of locus coeruleus activation on noradrenaline release measured in the anteroventral thalamic nucleus every second by means of differential pulse amperometry: (i) chemical activation of locus coeruleus by local injection of glutamate (0.2-0.8 nmol) immediately and consistently evoked noradrenaline release in a dose-dependent manner; and (ii) peripheral stimulation of the sciatic nerve (20 s)--known to enhance the firing rate of locus coeruleus neurons-evoked a noradrenaline release similar to that produced by a stimulation of the dorsal noradrenergic bundle at 8-10 Hz. Pharmacological and kinetic characteristics of the noradrenaline release were the same for central or peripheral stimulation of locus coeruleus neurons. Our results indicate that in vivo electrochemistry, because of its sensitivity and its high space and time resolution, is well suited for studies of evoked noradrenaline release from locus coeruleus terminals. This approach allowed us to describe the characteristics of central noradrenaline release evoked by central and peripheral stimulations of short duration. In particular, we observed a very close relationship between impulse flow and evoked noradrenaline release.

摘要

丘脑前腹核仅由起源于蓝斑的去甲肾上腺素能终末支配,蓝斑是位于脑桥背盖部的一个密集细胞群。在乌拉坦麻醉的大鼠中,通过使用碳纤维电极结合电化学方法对蓝斑轴突(背侧去甲肾上腺素能束;14 Hz,20 s)进行电刺激,可使丘脑前腹核内测量的信号(儿茶酚氧化电流)迅速增加。这种效应具有可重复性且立即可逆。发现该电流的诱发变化是由于终末释放的去甲肾上腺素氧化所致。诱发的去甲肾上腺素释放幅度随刺激频率呈非线性变化。我们通过差分脉冲伏安法研究了蓝斑激活对每秒在丘脑前腹核中测量的去甲肾上腺素释放的影响:(i)通过局部注射谷氨酸(0.2 - 0.8 nmol)对蓝斑进行化学激活,立即且持续地以剂量依赖方式诱发去甲肾上腺素释放;(ii)坐骨神经的外周刺激(20 s)——已知可提高蓝斑神经元的放电频率——诱发的去甲肾上腺素释放与以8 - 10 Hz刺激背侧去甲肾上腺素能束所产生的释放相似。蓝斑神经元的中枢或外周刺激所引起的去甲肾上腺素释放的药理学和动力学特征相同。我们的结果表明,由于其灵敏度以及高空间和时间分辨率,体内电化学非常适合用于研究从蓝斑终末诱发的去甲肾上腺素释放。这种方法使我们能够描述由中枢和外周短时间刺激诱发的中枢去甲肾上腺素释放的特征。特别是,我们观察到冲动流与诱发的去甲肾上腺素释放之间存在非常密切的关系。

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