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Reduced Inhibition within Layer IV of Sert Knockout Rat Barrel Cortex is Associated with Faster Sensory Integration

机译:减少的基因敲除大鼠桶皮质的第四层内抑制与更快的感觉统合有关。

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摘要

Neural activity is essential for the maturation of sensory systems. In the rodent primary somatosensory cortex (S1), high extracellular serotonin (5-HT) levels during development impair neural transmission between the thalamus and cortical input layer IV (LIV). Rodent models of impaired 5-HT transporter (SERT) function show disruption in their topological organization of S1 and in the expression of activity-regulated genes essential for inhibitory cortical network formation. It remains unclear how such alterations affect the sensory information processing within cortical LIV. Using serotonin transporter knockout (Sert−/−) rats, we demonstrate that high extracellular serotonin levels are associated with impaired feedforward inhibition (FFI), fewer perisomatic inhibitory synapses, a depolarized GABA reversal potential and reduced expression of KCC2 transporters in juvenile animals. At the neural population level, reduced FFI increases the excitatory drive originating from LIV, facilitating evoked representations in the supragranular layers II/III. The behavioral consequence of these changes in network excitability is faster integration of the sensory information during whisker-based tactile navigation, as Sert−/− rats require fewer whisker contacts with tactile targets and perform object localization with faster reaction times. These results highlight the association of serotonergic homeostasis with formation and excitability of sensory cortical networks, and consequently with sensory perception.
机译:神经活动对于感觉系统的成熟至关重要。在啮齿动物的初级体感皮层(S1)中,发育过程中高的细胞外血清素(5-HT)水平损害了丘脑和IV输入层(LIV)之间的神经传递。受损的5-HT转运蛋白(SERT)功能的啮齿动物模型显示其S1的拓扑结构以及抑制性皮质网络形成所必需的活性调节基因的表达受到破坏。尚不清楚这种改变如何影响皮层LIV内的感觉信息处理。使用血清素转运蛋白敲除(Sert -/-)大鼠,我们证明了高的细胞外血清素水平与前馈抑制(FFI)受损,过少的抑制性突触,去极化的GABA逆转电位和表达降低有关幼小动物中的KCC2转运蛋白。在神经群体水平上,降低的FFI会增加源自LIV的兴奋性驱动力,从而促进II / III上层的诱发表现。这些网络兴奋性变化的行为后果是在基于晶须的触觉导航过程中更快地整合了感官信息,因为Sert -/-大鼠需要较少的与触觉目标的晶须接触,并以更快的反应进行对象定位次。这些结果突出了血清素能稳态与感觉皮层网络的形成和兴奋性之间的联系,并因此与感觉知觉相关。

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