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Layer-Specific Noradrenergic Modulation of Inhibition in Cortical Layer II/III

机译:皮质II / III层中抑制作用的特定于层的去甲肾上腺素能调制。

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摘要

Norepinephrine (NE) is released in the neocortex after activation of the locus coeruleus of the brain stem in response to novel, salient, or fight-or-flight stimuli. The role of adrenergic modulation in sensory cortices is not completely understood. We investigated the possibility that NE modifies the balance of inhibition acting on 2 different γ-aminobutyric acid (GABA)ergic pathways. Using patch-clamp recordings, we found that the application of NE induces an α1 adrenergic receptor–mediated decrease of the amplitude of inhibitory postsynaptic currents (IPSCs) evoked by stimulation of layer I (LI-eIPSCs) and a β and α2 receptor–mediated increase in the amplitude of IPSCs evoked by stimulation of layer II/III (LII/III-eIPSCs). Analysis of minimal stimulation IPSCs, IPSC kinetics, and sensitivity to the GABAA receptor subunit–selective enhancer zolpidem corroborated the functional difference between LI- and LII/III-eIPSCs, suggestive of a distal versus somatic origin of LI- and LII/III-eIPSCs, respectively. These findings suggest that NE shifts the balance between distal and somatic inhibition to the advantage of the latter. We speculate that such shift modifies the balance of sensory-specific and emotional information in the integration of neural input to the upper layers of the auditory cortex.
机译:响应新的,明显的或战斗或逃避的刺激,脑干的轨迹蓝斑激活后,去甲肾上腺素(NE)释放在新皮质中。肾上腺素能调节在感觉皮质中的作用尚未完全了解。我们调查了NE修改作用于2种不同的γ-氨基丁酸(GABA)能量途径的抑制平衡的可能性。使用膜片钳记录,我们发现NE的应用诱导了由α1肾上腺素受体介导的,由刺激第I层(LI-eIPSCs)和β和α2受体介导的诱发的抑制性突触后电流(IPSC)幅度的降低。通过刺激第II / III层(LII / III-eIPSC)引起的IPSC幅度增加。对最小刺激IPSCs,IPSC动力学和对GABAA受体亚基选择性增强剂唑吡坦的敏感性的分析证实了LI-和LII / III-eIPSCs之间的功能差异,提示了LI-和LII / III-eIPSCs的远端与体细胞起源, 分别。这些发现表明,NE将远端抑制和体细胞抑制之间的平衡转移到后者的优势上。我们推测这种转变会改变听觉皮层上层神经输入的整合中特定于感觉和情绪信息的平衡。

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