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Presynaptic GABAB Receptors Modulate Thalamic Excitation of Inhibitory and Excitatory Neurons in the Mouse Barrel Cortex

机译:突触前GABA B受体调节小鼠桶状皮质中抑制性和兴奋性神经元的丘脑兴奋。

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摘要

Cortical inhibition plays an important role in the processing of sensory information, and the enlargement of receptive fields by the in vivo application of GABAB receptor antagonists indicates that GABAB receptors mediate some of this cortical inhibition. Although there is evidence of postsynaptic GABAB receptors on cortical neurons, there is no evidence of GABAB receptors on thalamocortical terminals. Therefore, to determine if presynaptic GABAB receptors modulate the thalamic excitation of layer IV inhibitory neurons and excitatory neurons in layers II-III and IV of the somatosensory “barrel” cortex of mice we used a thalamocortical slice preparation and patch clamp electrophysiology. Stimulation of the ventrobasal thalamus elicited excitatory postsynaptic currents (EPSCs) in cortical neurons. Bath application of baclofen, a selective GABAB receptor agonist, reversibly decreased AMPA receptor-mediated and NMDA receptor-mediated EPSCs in inhibitory and excitatory neurons. The GABAB receptor antagonist, CGP 35348, reversed the inhibition produced by baclofen. Blocking the postsynaptic GABAB-mediated effects with a Cs+-based recording solution did not affect the inhibition, suggesting a presynaptic effect of baclofen. Baclofen reversibly increased the paired pulse ratio and the coefficient of variation, consistent with the presynaptic inhibition of glutamate release. Our results indicate that the presynaptic activation of GABAB receptors modulates thalamocortical excitation of inhibitory and excitatory neurons and provide another mechanism by which cortical inhibition can modulate the processing of sensory information.
机译:皮质抑制在感觉信息的处理中起重要作用,并且体内应用GABA B受体拮抗剂引起的感受野的扩大表明GABA B受体介导了某些这种皮质抑制。尽管在皮质神经元上有突触后GABA B受体的证据,但在丘脑皮层末端没有GABA B受体的证据。因此,为了确定突触前的GABA B受体是否调节小鼠体感“桶状”皮层的II-III和IV层的IV层抑制神经元和兴奋性神经元的丘脑兴奋,我们使用了丘脑皮层切片制剂和膜片钳电生理学。腹侧丘脑的刺激在皮层神经元中引起兴奋性突触后电流(EPSC)。选择性应用GABAB受体激动剂baclofen的沐浴应用可逆地减少了抑制性和兴奋性神经元中AMPA受体介导的和NMDA受体介导的EPSC。 GABAB受体拮抗剂CGP 35348逆转了巴氯芬产生的抑制作用。用基于Cs + 的记录溶液阻断突触后GABA B介导的作用不影响抑制作用,表明巴氯芬具有突触前作用。巴氯芬可逆地增加配对脉冲比率和变异系数,与谷氨酸释放前突触抑制作用一致。我们的结果表明,GABA B受体的突触前激活调节了抑制性和兴奋性神经元的丘脑皮质兴奋,并提供了另一种机制,皮质抑制可通过该机制调节感觉信息的处理。

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