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关于共传递与神经递质表型可塑性

On cotransmission & neurotransmitter phenotype plasticity.

作者信息

Trudeau Louis-Eric, Gutiérrez Rafael

机构信息

Department of Pharmacology, CNS Research Group, Faculty of Medicine, Université de Montreal, C P 6128, Succursale Centre-Ville, Montreal, Quebec, Canada.

出版信息

Mol Interv. 2007 Jun;7(3):138-46. doi: 10.1124/mi.7.3.5.

Abstract

Most neurons in the nervous system appear to contain and release more than one chemical acting as a neurotransmitter or neuromodulator. Cotransmission can therefore be considered the rule rather than the exception. Indeed, cotransmission of a classical neurotransmitter and a peptide is a ubiquitous phenomenon, but several neuron types can also contain more than one classical neurotransmitter [glutamate, gamma-amino butyric acid (GABA), acetylcholine, dopamine, etc.]. Although the expression of peptide cotransmitters is known to be highly regulated in response to various physiological, chemical and pathological signals, new data now suggest that a similar situation prevails in neurons that co-release two classical transmitters. In this review we will consider a number of recently described examples of cotransmission implicating more than one classical neurotransmitter. We will also consider new data showing that during development and later in adulthood, as well as in the context of disease, the neurotransmitter phenotype of neurons can be highly plastic as revealed by changes in the expression of neurotransmitter synthesis enzymes and vesicular neurotransmitter transporters.

摘要

神经系统中的大多数神经元似乎都含有并释放不止一种充当神经递质或神经调质的化学物质。因此,共传递可被视为一种常规现象而非例外情况。事实上,经典神经递质和肽的共传递是一种普遍存在的现象,但几种神经元类型也可能含有不止一种经典神经递质[谷氨酸、γ-氨基丁酸(GABA)、乙酰胆碱、多巴胺等]。尽管已知肽类共递质的表达会根据各种生理、化学和病理信号受到高度调节,但新数据表明,在共同释放两种经典递质的神经元中也存在类似情况。在这篇综述中,我们将探讨一些最近描述的涉及不止一种经典神经递质的共传递实例。我们还将考虑新数据,这些数据表明在发育过程中以及成年后期,乃至在疾病背景下,神经元的神经递质表型可能具有高度可塑性,这可通过神经递质合成酶和囊泡神经递质转运体表达的变化得以揭示。

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