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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Intracellular ascorbic acid inhibits transport of glucose by neurons, but not by astrocytes.
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Intracellular ascorbic acid inhibits transport of glucose by neurons, but not by astrocytes.

机译:细胞内抗坏血酸抑制神经元而不是星形胶质细胞转运葡萄糖。

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It has been demonstrated that glutamatergic activity induces ascorbic acid (AA) depletion in astrocytes. Additionally, different data indicate that AA may inhibit glucose accumulation in primary cultures of rat hippocampal neurons. Thus, our hypothesis postulates that AA released from the astrocytes during glutamatergic synaptic activity may inhibit glucose uptake by neurons. We observed that cultured neurons express the sodium-vitamin C cotransporter 2 and the facilitative glucose transporters (GLUT) 1 and 3, however, in hippocampal brain slices GLUT3 was the main transporter detected. Functional activity of GLUTs was confirmed by means of kinetic analysis using 2-deoxy-d-glucose. Therefore, we showed that AA, once accumulated inside the cell, inhibits glucose transport in both cortical and hippocampal neurons in culture. Additionally, we showed that astrocytes are not affected by AA. Using hippocampal slices, we observed that upon blockade of monocarboxylate utilization by alpha-cyano-4-hydroxycinnamate and after glucose deprivation, glucose could rescue neuronal response to electrical stimulation only if AA uptake is prevented. Finally, using a transwell system of separated neuronal and astrocytic cultures, we observed that glutamate can reduce glucose transport in neurons only in presence of AA-loaded astrocytes, suggesting the essential role of astrocyte-released AA in this effect.
机译:已经证实,谷氨酸能活性诱导星形胶质细胞中抗坏血酸(AA)的消耗。此外,不同的数据表明,AA可能会抑制大鼠海马神经元原代培养物中的葡萄糖蓄积。因此,我们的假设假设在谷氨酸能突触活动期间从星形胶质细胞释放的AA可能抑制神经元摄取葡萄糖。我们观察到培养的神经元表达了钠-维生素C共转运蛋白2和促进性葡萄糖转运蛋白(GLUT)1和3,但是,在海马脑片中GLUT3是检测到的主要转运蛋白。通过使用2-脱氧-d-葡萄糖的动力学分析证实了GLUT的功能活性。因此,我们表明AA一旦积累在细胞内,就会抑制培养物中皮层和海马神经元中的葡萄糖转运。此外,我们表明星形胶质细胞不受AA的影响。使用海马切片,我们观察到在α-氰基-4-羟基肉桂酸酯阻断单羧酸盐利用后以及葡萄糖剥夺后,只有防止AA摄取,葡萄糖才能挽救神经元对电刺激的反应。最后,使用分离的神经元和星形细胞培养物的transwell系统,我们观察到谷氨酸仅在存在AA的星形胶质细胞存在的情况下才能减少神经元中的葡萄糖转运,提示星形胶质细胞释放的AA在此作用中具有重要作用。

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