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Metabolic pathways and activity-dependent modulation of glutamate concentration in the human brain

机译:人脑中谷氨酸浓度的代谢途径和活性依赖性调节

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摘要

Glutamate is one of the most versatile molecules present in the human brain, involved in protein synthesis, energy production, ammonia detoxification, and transport of reducing equivalents. Aside from these critical metabolic roles, glutamate plays a major part in brain function, being not only the most abundant excitatory neurotransmitter, but also the precursor for c-aminobutyric acid, the predominant inhibitory neurotransmitter. Regulation of glutamate levels is pivotal for normal brain function, as abnormal extracellular concentration of glutamate can lead to impaired neurotransmission, neurodegeneration and even neuronal death. Understanding how the neuron-astrocyte functional and metabolic interactions modulate glutamate concentration during different activation status and under physiological and pathological conditions is a challenging task, and can only be tentatively estimated from current literature. In this paper, we focus on describing the various metabolic pathways which potentially affect glutamate concentration in the brain, and emphasize which ones are likely to produce the variations in glutamate concentration observed during enhanced neuronal activity in human studies.
机译:谷氨酸是人脑中最通用的分子之一,参与蛋白质合成,能量生产,氨解毒和还原性当量的运输。除了这些关键的代谢作用外,谷氨酸在脑功能中也起着主要作用,不仅是最丰富的兴奋性神经递质,而且还是主要的抑制性神经递质c-氨基丁酸的前体。谷氨酸水平的调节对于正常的脑功能至关重要,因为异常的细胞外谷氨酸浓度会导致神经传递受损,神经变性甚至神经元死亡。了解神经元-星形细胞功能和代谢相互作用如何在不同的激活状态下以及在生理和病理条件下调节谷氨酸浓度是一项艰巨的任务,只能从当前文献中初步估算。在本文中,我们着重描述可能影响大脑中谷氨酸浓度的各种代谢途径,并强调在人类研究中增强神经元活动期间观察到的哪些可能产生谷氨酸浓度变化。

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