Pellerin L, Magistretti P J
Laboratoire de Recherche Neurologique, Faculté de Médecine, Université de Lausanne, Suisse.
Dev Neurosci. 1996;18(5-6):336-42. doi: 10.1159/000111426.
Astrocytes appear to be ideally localized to couple neuronal activity to energy metabolism. First, specialized processes, the astrocytic end-feet surround blood vessels, the source of glucose for the brain. Second, other processes ensheath synapses and express receptors and transporters for various neurotransmitters, endowing astrocytes with the capacity to 'sense' synaptic activity. We have previously described the stimulation by L-glutamate of glucose utilization by astrocytes, monitored by 2-deoxyglucose uptake and phosphorylation. Here we have further characterized the pharmacological characteristics and molecular mechanisms of this action, which involve a massive influx of Na+ as a result of the cotransport of the amino acid with Na+, by Na(+)-dependent transporters and a subsequent activation of the Na+/K+ ATPase. To fuel the ATPase, glucose is processed glycolytically thus leading to increased lactate production. Since excitatory amino acids are released during activation by cortical afferents, these data reveal a simple mechanism for coupling neuronal activity to glucose utilization and provide further evidence for the concept of a transient stimulation of aerobic glycolysis during activation occurring preferentially in astrocytes.
星形胶质细胞似乎处于理想的定位,能够将神经元活动与能量代谢联系起来。首先,星形胶质细胞的终足这一特殊结构围绕着血管,而血管是大脑葡萄糖的来源。其次,其他结构包裹着突触,并表达多种神经递质的受体和转运体,使星形胶质细胞具备“感知”突触活动的能力。我们之前曾描述过,通过2-脱氧葡萄糖摄取和磷酸化监测发现,L-谷氨酸可刺激星形胶质细胞利用葡萄糖。在此,我们进一步阐述了这一作用的药理学特征和分子机制,其涉及由于氨基酸与Na+通过Na+依赖性转运体协同转运导致大量Na+内流,以及随后Na+/K+ATP酶的激活。为给ATP酶提供能量,葡萄糖通过糖酵解进行处理,从而导致乳酸生成增加。由于兴奋性氨基酸在皮质传入神经激活过程中释放,这些数据揭示了一种将神经元活动与葡萄糖利用联系起来的简单机制,并为激活过程中优先在星形胶质细胞中发生的有氧糖酵解短暂刺激这一概念提供了进一步证据。