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Overview of glutamatergic neurotransmission in the nervous system

机译:神经系统中谷氨酸能神经传递的概述

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This introductory article to the special edition on glutamate neurotransmission in neuropsychiatric disorders provides an overview of glutamate neurotransmitter system physiology and pharmacology. Glutamate was only relatively recently recognized as the major excitatory neurotransmitter in the mammalian brain, in part due to its ubiquitous nature and diverse metabolic roles within the CNS. The extremely high concentration of glutamate in brain tissue paired with its excitotoxic potential requires tight physiological regulation of extracellular glutamate levels and receptor signaling in order to assure optimal excitatory neurotransmission but limits excitotoxic damage. In order to achieve this high level of control, the system has developed a complex physiology with multiple regulatory processes modulating glutamate metabolism, release, receptor signaling, and uptake. The basic physiology of the various regulatory components of the system including the rich receptor pharmacology is briefly reviewed. Potential contributions from each of the system's components to the pathophysiology of neuropsychiatric illnesses are briefly discussed, as are the many new pharmacological targets for drug development provided by the system, especially as they pertain to the proceeding preclinical and clinical articles in this issue.
机译:这篇关于神经精神疾病中谷氨酸神经传递的特别版的介绍性文章概述了谷氨酸神经递质系统的生理学和药理学。谷氨酸只是在最近才被认为是哺乳动物大脑中主要的兴奋性神经递质,部分是由于其无处不在的性质和中枢神经系统内多种代谢作用。脑组织中谷氨酸的极高浓度及其激发毒性的潜力要求对胞外谷氨酸水平和受体信号进行严格的生理调节,以确保最佳的兴奋性神经传递,但限制了激发毒性的损害。为了实现这种高水平的控制,系统开发了具有多种调节过程的复杂生理机制,这些调节过程调节谷氨酸的代谢,释放,受体信号传导和摄取。简要回顾了系统的各种调节组件的基本生理学,包括丰富的受体药理学。简要讨论了系统各个组成部分对神经精神疾病的病理生理学的潜在贡献,以及该系统为药物开发提供的许多新药理学目标,特别是它们与本期临床前和临床文章有关的问题。

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