首页> 外文期刊>Neurochemistry International: The International Journal for the Rapid Publication of Critical Reviews, Preliminary and Original Research Communications in Neurochemistry >Release of glutamate by the embryonic spinal motoneurons of rat positively regulated by acetylcholine through the nicotinic and muscarinic receptors.
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Release of glutamate by the embryonic spinal motoneurons of rat positively regulated by acetylcholine through the nicotinic and muscarinic receptors.

机译:乙酰胆碱通过烟碱和毒蕈碱受体正调控大鼠的胚胎脊髓运动神经元释放谷氨酸。

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摘要

It has been shown that mature neurons in adult vertebrates can co-express glutamate and acetylcholine. Furthermore, interactions at the synaptic level have been demonstrated. In a previous study we found that also motoneurons at early embryonic stages, thus well prior to synapse formation, release acetylcholine, and that glutamate increases this release. We now report the existence of a glutamate release from embryonic motoneurons and the increase of glutamate release by acetylcholine. This effect is mediated by nicotinic and muscarinic cholinergic receptors present on embryonic motoneurons. Using conditions of partial or total depletion of calcium, we show that the glutamate release has two components: one is calcium-dependent and the other calcium-independent. Furthermore, we show that extracellular glutamate can be taken up by motoneurons, probably via the neuronal glutamate transporter EAAC1, which we find to be expressed at this stage. Monitoring of the glutamate release kinetics showed that extracellular glutamate concentration reached a steady-state level, strongly suggesting the establishment of equilibrium between glutamate release and uptake. Altogether, these results support the idea that glutamate can act as a neurotransmitter in embryonic motoneurons. We hypothesise that, glutamate acts as a regulator of motoneuron maturation and spinal cord development.
机译:已经表明,成年脊椎动物中的成熟神经元可以共表达谷氨酸和乙酰胆碱。此外,已经证明了在突触水平的相互作用。在先前的研究中,我们发现运动神经元也处于早期胚胎阶段,因此在突触形成之前就释放了乙酰胆碱,而谷氨酸增加了这种释放。我们现在报道从胚胎运动神经元释放谷氨酸的存在和乙酰胆碱释放谷氨酸的增加。这种作用是由胚胎运动神经元上存在的烟碱和毒蕈碱胆碱能受体介导的。使用部分或全部消耗钙的条件,我们表明谷氨酸盐释放有两个组成部分:一个是钙依赖性的,另一个是钙依赖性的。此外,我们表明细胞外谷氨酸可能被运动神经元吸收,可能是通过神经元谷氨酸转运蛋白EAAC1吸收的,我们发现它在此阶段表达。谷氨酸释放动力学的监测表明,细胞外谷氨酸浓度达到稳态水平,强烈暗示了谷氨酸释放和摄取之间建立平衡。总之,这些结果支持了谷氨酸可以在胚胎运动神经元中充当神经递质的想法。我们假设谷氨酸充当运动神经元成熟和脊髓发育的调节剂。

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