Joëls M, Urban I J
Exp Brain Res. 1984;54(3):455-62. doi: 10.1007/BF00235471.
Electrical stimulation of fimbria-fornix (fi-fx) fibers monosynaptically activated many of the neurons tested in the lateral septal complex (LSC) of the rat. The orthodromically activated LSC neurons were classified as "strongly" orthodromically activated (SOA) or "weakly" orthodromically activated ( WOA ) cells according to their threshold for eliciting a response, stability of the response latency, frequency following and the stimulus-response ratio. Microiontophoretically applied glutamate (GLU) could excite both SOA and WOA neurons. However, the expelling currents needed to activate the SOA cells were often considerably lower than those necessary to excite the WOA cells suggesting higher sensitivity to GLU of those cells which receive a strong fi-fx innervation. Iontophoretically administered glutamic acid diethylester (GDEE) in general reversibly attenuated excitatory responses of LSC cells to GLU but not to acetylcholine. GDEE was also effective in blocking the synaptic responses of SOA septal cells to fi-fx stimuli. In addition, GDEE administered topically reversibly suppressed the field potential induced in the LSC by fi-fx stimulation. These electrophysiological and pharmacological results support recent biochemical observations suggesting that the excitatory innervation of LSC neurons by fi-fx fibers is mediated by GLU or a closely related excitatory amino acid.
对大鼠穹窿-海马伞(fi-fx)纤维进行电刺激,可单突触激活在大鼠外侧隔复合体(LSC)中测试的许多神经元。根据引发反应的阈值、反应潜伏期的稳定性、频率跟随以及刺激-反应比率,将顺向激活的LSC神经元分为“强”顺向激活(SOA)或“弱”顺向激活(WOA)细胞。微量离子电泳施加的谷氨酸(GLU)可兴奋SOA和WOA神经元。然而,激活SOA细胞所需的逐出电流通常远低于兴奋WOA细胞所需的电流,这表明接受强fi-fx神经支配的细胞对GLU的敏感性更高。离子电泳给予二乙基亚氨基谷氨酸(GDEE)通常可可逆地减弱LSC细胞对GLU而非乙酰胆碱的兴奋性反应。GDEE还可有效阻断SOA隔区细胞对fi-fx刺激的突触反应。此外,局部给予GDEE可可逆地抑制fi-fx刺激在LSC中诱导的场电位。这些电生理和药理学结果支持了最近的生化观察结果,表明fi-fx纤维对LSC神经元的兴奋性神经支配是由GLU或密切相关的兴奋性氨基酸介导的。