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首页> 外文期刊>Life sciences >Influence of parafascicular thalamic input on neuronal activity within the nucleus accumbens is mediated by nitric oxide - An in vivo study
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Influence of parafascicular thalamic input on neuronal activity within the nucleus accumbens is mediated by nitric oxide - An in vivo study

机译:一氧化氮介导束旁丘脑输入对伏隔核内神经元活动的影响-体内研究

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Aims Thalamostriatal fibers are involved in cognitive tasks such as acquisition, learning, processing of sensory events, and behavioral flexibility and might play a role in Parkinson's disease. The aim of the present study was the in vivo electrochemical characterization of the projection from the lateral aspect of the parafascicular thalamus (Pfl) to the dorsolateral aspect of the nucleus accumbens (dNAc). Since nitric oxide (NO) plays a crucial role in striatal synaptic transmission, its implication in Pfl-evoked signaling within the dNAc was investigated. Main methods The Pfl was electrically stimulated utilizing paired pulses and extracellular potentials were recorded within the dNAc. Simultaneously, the dNAc was superfused using the push-pull superfusion technique for local application of compounds and for assessing the influence of NO on release of glutamate, aspartate and GABA. Key findings Stimulation of the Pfl evoked a negative-going component at 9-14 ms followed by a positive-going component at 39-48 ms. The early response was current-dependent and diminished by superfusion of the dNAc with tetrodotoxin, kynurenic acid or N G-nitro-l-arginine methyl ester (L-NAME), while 3-(2-hydroxy-2- nitroso-1-propylhydrazino)-1-propanamine (PAPA/NO) increased this evoked potential. Transmitter release was inhibited by L-NAME and facilitated by PAPA/NO. Significance This study describes for the first time in vivo extracellular electrical responses of the dNAc on stimulation of the Pfl. Synaptic transmission within the dNAc on stimulation of the Pfl seems to be facilitated by NO.
机译:目的丘脑纹状肌纤维参与认知任务,例如习得,学习,感觉事件的处理和行为灵活性,并可能在帕金森氏病中起作用。本研究的目的是对从束旁丘脑(Pfl)的侧面到伏隔核(dNAc)的背外侧的投影进行体内电化学表征。由于一氧化氮(NO)在纹状体突触传递中起关键作用,因此研究了其在dNAc中Pfl诱发的信号传导中的作用。主要方法利用配对脉冲对Pfl进行电刺激,并在dNAc中记录细胞外电位。同时,使用推挽式融合技术对dNAc进行融合,以局部施用化合物并评估NO对谷氨酸,天冬氨酸和GABA释放的影响。主要发现Pfl的刺激在9-14 ms诱发负向成分,然后在39-48 ms诱发正向成分。早期反应是电流依赖性的,并且通过dNAc与河豚毒素,犬尿酸或NG-硝基-1-精氨酸甲酯(L-NAME)的融合而减弱,而3-(2-羟基-2-亚硝基-1-丙基肼基-1-丙胺(PAPA / NO)增加了这种诱发电位。 L-NAME抑制了变送器的释放,PAPA / NO促进了变送器的释放。意义这项研究首次描述了dNAc对Pfl刺激的体内细胞外电反应。 NO促进dNAc内突触传递Pfl。

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