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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Control of dorsal raphe serotonergic neurons by the medial prefrontal cortex: Involvement of serotonin-1A, GABA(A), and glutamate receptors.
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Control of dorsal raphe serotonergic neurons by the medial prefrontal cortex: Involvement of serotonin-1A, GABA(A), and glutamate receptors.

机译:内侧前额叶皮层控制背脊部血清素能神经元:血清素1A,GABA(A)和谷氨酸受体的参与。

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Anatomical evidence indicates that medial prefrontal cortex (mPFC) neurons project to the dorsal raphe nucleus (DR). In this study, we functionally characterized this descending pathway in rat brain. Projection neurons in the mPFC were identified by antidromic stimulation from the DR. Electrical stimulation of the mPFC mainly inhibited the activity of DR 5-HT neurons (55 of 66). Peristimulus time histograms showed a silence of 150 +/- 9 msec poststimulus (latency, 36 +/- 1 msec). The administration of WAY-100635 and picrotoxinin partly reversed this inhibition, indicating the involvement of 5-HT(1A) and GABA(A) receptors. In rats depleted of 5-HT with p-chlorophenylalanine, the electrical stimulation of mPFC mainly activated 5-HT neurons (31 of 40). The excitations (latency, 17 +/- 1 msec) were antagonized by MK-801 and NBQX. Likewise, MK-801 prevented the rise in DR 5-HT release induced by electrical stimulation of mPFC. The application of 8-OH-DPAT in mPFC significantly inhibited the firing rate of DR 5-HT neurons and, in dual-probe microdialysis experiments, reduced the 5-HT output in mPFC and DR. Furthermore, the application of WAY-100635 in mPFC significantly antagonized the reduction of 5-HT release produced by systemic 8-OH-DPAT administration in both areas. These results indicate the existence of a complex regulation of DR 5-HT neurons by mPFC afferents. The stimulus-induced excitation of some 5-HT neurons by descending excitatory fibers releases 5-HT, which inhibits the same or other DR neurons by acting on 5-HT(1A) autoreceptors. Afferents from the mPFC also inhibit 5-HT neurons through the activation of GABAergic interneurons. Ascending serotonergic pathways may control the activity of this descending pathway by acting on postsynaptic 5-HT(1A) receptors.
机译:解剖学证据表明,内侧前额叶皮层(mPFC)神经元投射到背缝核(DR)。在这项研究中,我们在功能上表征了大鼠大脑中的这种下降途径。 mPFC中的投射神经元是通过DR的反线刺激识别的。 mPFC的电刺激主要抑制DR 5-HT神经元的活性(66中的55)。蠕动时间直方图显示刺激后沉默150 +/- 9毫秒(潜伏期36 +/- 1毫秒)。 WAY-100635和pictotoxinin的使用可部分逆转这种抑制作用,表明参与了5-HT(1A)和GABA(A)受体。在对氯苯丙氨酸耗尽5-HT的大鼠中,mPFC的电刺激主要激活了5-HT神经元(40个中的31个)。 MK-801和NBQX对抗了激发(潜伏期为17 +/- 1毫秒)。同样,MK-801防止了mPFC电刺激引起的DR 5-HT释放增加。 8-OH-DPAT在mPFC中的应用显着抑制了DR 5-HT神经元的放电速率,并且在双探针微透析实验中,降低了mPFC和DR中的5-HT输出。此外,WAY-100635在mPFC中的应用显着拮抗了在这两个领域中通过全身性8-OH-DPAT给药产生的5-HT释放的减少。这些结果表明存在由mPFC传入的DR 5-HT神经元的复杂调控。刺激性纤维的下降刺激了某些5-HT神经元的刺激诱导释放了5-HT,它通过作用于5-HT(1A)自体受体抑制了相同或其他DR神经元。 mPFC的传入分子还通过激活GABA能的中间神经元来抑制5-HT神经元。上升的血清素能途径可能通过作用于突触后5-HT(1A)受体来控制该下降途径的活性。

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