Takita Masatoshi, Kuramochi Masahito, Izaki Yoshinori, Ohtomi Michiko
Cognition and Action Group, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki 305-8566, Japan.
Brain Res. 2007 May 30;1150:69-73. doi: 10.1016/j.brainres.2007.02.063. Epub 2007 Mar 2.
Anatomical evidence suggests that rat CA1 hippocampal afferents collaterally innervate excitatory projecting pyramidal neurons and inhibitory interneurons, creating a disynaptic, feed-forward inhibition microcircuit in the medial prefrontal cortex (mPFC). We investigated the temporal relationship between the frequency of paired synaptic transmission and gamma-aminobutyric acid (GABA)ergic receptor-mediated modulation of the microcircuit in vivo under urethane anesthesia. Local perfusions of a GABAa antagonist (-)-bicuculline into the mPFC via microdialysis resulted in a statistically significant disinhibitory effect on intrinsic GABA action, increasing the first and second mPFC responses following hippocampal paired stimulation at interstimulus intervals of 100-200 ms, but not those at 25-50 ms. This (-)-bicuculline-induced disinhibition was compensated by the GABAa agonist muscimol, which itself did not attenuate the intrinsic oscillation of the local field potentials. The perfusion of a sub-minimal concentration of GABAb agonist (R)-baclofen slightly enhanced the synaptic transmission, regardless of the interstimulus interval. In addition to the tonic control by spontaneous fast-spiking GABAergic neurons, it is clear the sequential transmission of the hippocampal-mPFC pathway can phasically drive the collateral feed-forward inhibition system through activation of a GABAa receptor, bringing an active signal filter to the various types of impulse trains that enter the mPFC from the hippocampus in vivo.
解剖学证据表明,大鼠CA1海马传入神经侧支支配兴奋性投射锥体细胞和抑制性中间神经元,在内侧前额叶皮质(mPFC)中形成一个双突触的前馈抑制微回路。我们研究了在乌拉坦麻醉下,体内配对突触传递频率与该微回路中γ-氨基丁酸(GABA)能受体介导的调节之间的时间关系。通过微透析将GABAa拮抗剂(-)荷包牡丹碱局部灌注到mPFC中,对内在GABA作用产生了具有统计学意义的去抑制作用,增加了在100 - 200毫秒的刺激间隔下海马配对刺激后mPFC的第一和第二次反应,但在25 - 50毫秒时没有增加。这种(-)荷包牡丹碱诱导的去抑制作用被GABAa激动剂蝇蕈醇补偿,蝇蕈醇本身并没有减弱局部场电位的内在振荡。灌注亚最小浓度的GABAb激动剂(R)巴氯芬会轻微增强突触传递,而与刺激间隔无关。除了由自发快速放电的GABA能神经元进行的紧张性控制外,很明显海马 - mPFC通路的顺序传递可以通过激活GABAa受体,从相位上驱动侧支前馈抑制系统,为体内从海马进入mPFC的各种类型的冲动序列带来一个主动信号滤波器。