Muñoz M D, Herreras O, Herranz A S, Solís J M, Martín del Río R, Lerma J
Neuropharmacology. 1987 Jan;26(1):1-8. doi: 10.1016/0028-3908(87)90037-2.
The effect of inhibition of the high-affinity uptake of glutamate on the extracellular concentration of amino acids and on neuronal excitability was studied in vivo in the hippocampus of the rat. The dentate gyrus or CA1 field were perfused through a dialytrode with Krebs-Ringer-bicarbonate or dihydrokainic acid solutions. The spontaneous electrical activity and evoked field potentials were recorded concomitantly at dendritic or somatic levels. The results showed that with dihydrokainic acid: the extracellular concentrations of both glutamate and taurine were markedly increased in both areas of the hippocampus, the response of taurine being greater in CA1, while other amino acids were unaffected; in the dentate gyrus, the field excitatory postsynaptic potential was decreased while the population spikes were augmented, indicating an increased excitability of the neuronal population. In CA1, both the excitatory postsynaptic potential and spikes were reduced in amplitude. These results indicate that changes in the extracellular concentration of endogenous glutamate influences excitability of the tissue and that inhibition of the uptake processes for putative amino acid neurotransmitters increases the postsynaptic action of synaptically-released endogenous amino acids.
在大鼠海马体中,研究了抑制谷氨酸高亲和力摄取对氨基酸细胞外浓度和神经元兴奋性的影响。通过透析电极用 Krebs-Ringer-碳酸氢盐或二氢卡因酸溶液灌注齿状回或 CA1 区。同时在树突或体细胞水平记录自发电活动和诱发场电位。结果表明,使用二氢卡因酸时:海马体两个区域的谷氨酸和牛磺酸细胞外浓度均显著增加,CA1 区牛磺酸的反应更大,而其他氨基酸未受影响;在齿状回中,场兴奋性突触后电位降低,而群体峰电位增强,表明神经元群体的兴奋性增加。在 CA1 区,兴奋性突触后电位和峰电位的幅度均降低。这些结果表明,内源性谷氨酸细胞外浓度的变化会影响组织的兴奋性,并且抑制假定的氨基酸神经递质的摄取过程会增加突触释放的内源性氨基酸的突触后作用。