Heron A, Lasbennes F, Seylaz J
Laboratoire de Recherches Cérébrovasculaires, UA 641 CNRS, Université Paris VII, France.
Brain Res. 1993 Apr 9;608(1):27-32. doi: 10.1016/0006-8993(93)90769-j.
This study was undertaken to determine whether endogenous adenosine modulates 'in vivo' neurotransmitter amino acid release via its presynaptic receptors. Two conditions were compared: neuronal depolarization by local infusion of veratridine (600 microM), and transient global ischemia by four-vessel occlusion. Both stimuli were applied for 20 min. Extracellular amino acid (glutamate, taurine/GABA, glycine) variations in concentration were determined in the rat hippocampus by microdialysis and HPLC. Modulation of adenosine receptor activity was objectified by continuous local infusion of an adenosine agonist (R-phenylisopropyladenosine R-PIA) or an antagonist (theophylline), starting one hour before stimulation of amino acid release. R-PIA (100 microM) significantly decreased the glutamate release (50%) evoked by veratridine, whereas it did not significantly modify the ischemia-induced glutamate release. In contrast, theophylline did not significantly affect veratridine-induced glutamate release, but it significantly potentiated glutamate efflux (400%) under ischemic conditions. Neither treatment altered the release of the other amino acids. These data suggest that endogenous adenosine appearing in the extracellular space during veratridine-induced depolarization cannot control glutamate release. In contrast, ischemia-induced glutamate release was strongly inhibited by the concomitant increase in extracellular adenosine.
本研究旨在确定内源性腺苷是否通过其突触前受体调节“体内”神经递质氨基酸的释放。比较了两种情况:通过局部注入藜芦碱(600微摩尔)使神经元去极化,以及通过四血管闭塞造成短暂性全脑缺血。两种刺激均施加20分钟。通过微透析和高效液相色谱法测定大鼠海马体中细胞外氨基酸(谷氨酸、牛磺酸/γ-氨基丁酸、甘氨酸)浓度的变化。在刺激氨基酸释放前1小时开始,通过持续局部注入腺苷激动剂(R-苯异丙基腺苷,R-PIA)或拮抗剂(茶碱)来客观评估腺苷受体活性的调节。R-PIA(100微摩尔)显著降低了藜芦碱诱发的谷氨酸释放(50%),而对缺血诱导的谷氨酸释放没有显著影响。相反,茶碱对藜芦碱诱导的谷氨酸释放没有显著影响,但在缺血条件下显著增强了谷氨酸外流(400%)。两种处理均未改变其他氨基酸的释放。这些数据表明,在藜芦碱诱导的去极化过程中出现在细胞外空间的内源性腺苷无法控制谷氨酸的释放。相反,缺血诱导的谷氨酸释放受到细胞外腺苷伴随增加的强烈抑制。