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[功能性脑成像:星形胶质细胞与神经元之间的代谢偶联作用]

[Functional brain imaging: role metabolic coupling between astrocytes and neurons].

作者信息

Magistretti P J, Pellerin L

机构信息

Institut de physiologie, Faculté de médecine, Université de Lausanne,

出版信息

Rev Med Suisse Romande. 2000 Sep;120(9):739-42.

Abstract

Despite the technological sophistication of brain imaging techniques, the precise mechanisms and cell types involved in coupling and in generating metabolic signals are still debated. Recent experimental data on the cellular and molecular mechanisms that underlie the fluorodeoxyglucose (FDG)--based PET imaging point to a critical role of a particular brain cell type, the astrocytes, in coupling neuronal activity to glucose utilization. Indeed, astrocytes possess receptors and re-uptake sites for a variety of neurotransmitters, including glutamate, the predominant excitatory neurotransmitter in the brain. In addition, astrocytic end-feet, which surround capillaries, are enriched in the specific glucose transporter GLUT-1. These features allow astrocytes to "sense" synaptic activity and to couple it with energy metabolism. In vivo and in vitro data support the following functional model: in response to glutamate released by active neurons, glucose is predominantly taken up by astrocytic end-feet; glucose is then metabolized to lactate which provides a preferred energy substrate for neurons. These data support the notion that astrocytes markedly contribute to the FDG-PET signal.

摘要

尽管脑成像技术在技术上已经很成熟,但关于耦合以及产生代谢信号所涉及的精确机制和细胞类型仍存在争议。最近有关基于氟脱氧葡萄糖(FDG)的PET成像的细胞和分子机制的实验数据表明,一种特殊的脑细胞类型——星形胶质细胞,在将神经元活动与葡萄糖利用耦合方面起着关键作用。事实上,星形胶质细胞拥有多种神经递质的受体和再摄取位点,包括谷氨酸,它是大脑中主要的兴奋性神经递质。此外,围绕毛细血管的星形胶质细胞终足富含特定的葡萄糖转运体GLUT-1。这些特性使星形胶质细胞能够“感知”突触活动并将其与能量代谢耦合起来。体内和体外数据支持以下功能模型:作为对活跃神经元释放的谷氨酸的反应,葡萄糖主要被星形胶质细胞终足摄取;然后葡萄糖被代谢为乳酸,为神经元提供一种首选的能量底物。这些数据支持了星形胶质细胞对FDG-PET信号有显著贡献这一观点。

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