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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Predominant enhancement of glucose uptake in astrocytes versus neurons during activation of the somatosensory cortex.
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Predominant enhancement of glucose uptake in astrocytes versus neurons during activation of the somatosensory cortex.

机译:在体感皮层激活过程中,星形胶质细胞相对于神经元的葡萄糖摄取显着增强。

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摘要

Glucose is the primary energetic substrate of the brain, and measurements of its metabolism are the basis of major functional cerebral imaging methods. Contrary to the general view that neurons are fueled solely by glucose in proportion to their energetic needs, recent in vitro and ex vivo analyses suggest that glucose preferentially feeds astrocytes. However, the cellular fate of glucose in the intact brain has not yet been directly observed. We have used a real-time method for measuring glucose uptake in astrocytes and neurons in vivo in male rats by imaging the trafficking of the nonmetabolizable glucose analog 6-deoxy-N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)-aminoglucose (6-NBDG) using two-photon microscopy. During resting conditions we found that astrocytes and neurons both take up 6-NBDG at the same rate in the barrel cortex of the rat. However, during intense neuronal activity triggered by whisker stimulation, astrocytes rapidly accelerated their uptake, whereas neuronal uptake remained almost unchanged. After the stimulation period, astrocytes returned to their preactivation rates of uptake paralleling the neuronal rate of uptake. These observations suggest that glucose is taken up primarily by astrocytes, supporting the view that functional imaging experiments based on glucose analogs extraction may predominantly reflect the metabolic activity of the astrocytic network.
机译:葡萄糖是大脑的主要能量底物,其代谢的测量是主要的功能性脑成像方法的基础。与通常认为神经元仅由葡萄糖为其能量需求成比例的燃料相反,最近的体外和离体分析表明,葡萄糖优先供给星形胶质细胞。但是,尚未直接观察到完整大脑中葡萄糖的细胞命运。我们已经通过成像不可代谢的葡萄糖类似物6-脱氧-N-(7-硝基苯-2-氧杂-1,3-二唑)的运输使用了一种实时方法来测量雄性大鼠体内星形胶质细胞和神经元体内的葡萄糖摄取使用两个光子显微镜检查-4-yl)-氨基葡萄糖(6-NBDG)。在静止状态下,我们发现星形胶质细胞和神经元在大鼠的桶状皮质中以相同的速率摄取6-NBDG。然而,在晶须刺激引起的强烈神经元活动期间,星形胶质细胞迅速加速其摄取,而神经元摄取几乎保持不变。刺激期过后,星形胶质细胞恢复到其吸收前激活速率,与神经元吸收速率相平行。这些观察结果表明,葡萄糖主要被星形胶质细胞吸收,从而支持了基于葡萄糖类似物提取的功能成像实验可能主要反映星形细胞网络的代谢活性的观点。

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