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Properties of a Distinct Subpopulation of GABAergic Commissural Interneurons That Are Part of the Locomotor Circuitry in the Neonatal Spinal Cord

机译:GABA能合子神经元的不同亚群的属性,它们是新生儿脊髓运动回路的一部分。

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摘要

Commissural inhibitory interneurons (INs) are integral components of the locomotor circuitry that coordinate left–right motor activity during movements. We have shown that GABA-mediated synaptic transmission plays a key role in generating alternating locomotor-like activity in the mouse spinal cord (Hinckley et al., 2005a). The primary objective of our study was to determine whether properties of lamina VIII (LVIII) GABAergic INs in the spinal cord of GAD67::GFP transgenic mice fit the classification of rhythm-coordinating neurons in the locomotor circuitry. The relatively large green fluorescent protein-expressing (GFP+) INs had comparable morphological and electrophysiological properties, suggesting that they comprised a homogenous neuronal population. They displayed multipolar and complex dendritic arbors in ipsilateral LVII–LVIII, and their axonal projections crossed the ventral commissure and branched into contralateral ventral, medial, and dorsal laminae. Putative synaptic contacts evident as bouton-like varicosities were detected in close apposition to lateral motoneurons, Renshaw cells, other GFP+ INs, and unidentified neurons. Exposure to a rhythmogenic mixture triggered locomotor-like rhythmic firing in the majority of LVIII GFP+ INs. Their induced oscillatory activity was out-of-phase with bursts of contralateral motoneurons and in-phase with bouts of ipsilateral motor activity. Membrane voltage oscillations were elicited by rhythmic increases in excitatory synaptic drive and might have been augmented by three types of voltage-activated cationic currents known to increase neuronal excitability. Based on their axonal projections and activity pattern, we propose that this population of GABAergic INs forms a class of local commissural inhibitory interneurons that are integral component of the locomotor circuitry.
机译:连合抑制性中间神经元(INs)是运动回路中不可或缺的组成部分,可协调运动中左右运动的活动。我们已经证明,GABA介导的突触传递在小鼠脊髓中产生交替的运动样活动中起关键作用(Hinckley等,2005a)。我们研究的主要目的是确定GAD67 :: GFP转基因小鼠脊髓中的VIII层(LVIII)GABA能性INs的特性是否适合运动电路中节奏协调神经元的分类。相对较大的绿色荧光蛋白表达(GFP +)IN具有可比的形态和电生理特性,表明它们包含同质的神经元群体。他们在同侧LVII–LVIII中显示多极和复杂的树突状乔木,其轴突突出部穿过腹侧连合,并分支成对侧腹侧,内侧和背侧椎板。在外侧运动神经元,Renshaw细胞,其他GFP + IN和身份不明的神经元紧密并置的位置,发现了推断为突触的突触,其形式为肉囊样静脉曲张。在大多数LVIII GFP + IN中,暴露于有节奏的混合物会触发运动样节奏性放电。他们诱导的振荡活动与对侧运动神经元的爆发异相,与同侧运动活动的爆发同相。膜性电压振荡是由兴奋性突触驱动的节律性增加引起的,并且可能已被三种已知会增加神经元兴奋性的电压激活型阳离子电流所加剧。基于它们的轴突预测和活动模式,我们建议这群GABAergic INs形成一类局部连合抑制性中间神经元,它们是运动电路的组成部分。

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