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首页> 外文期刊>Nature Communications >GABAergic interneurons form transient layer-specific circuits in early postnatal neocortex
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GABAergic interneurons form transient layer-specific circuits in early postnatal neocortex

机译:GABA能神经元在产后早期新皮层中形成瞬时的特定层电路

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GABAergic interneurons play key roles in cortical circuits, yet little is known about their early connectivity. Here we use glutamate uncaging and a novel optogenetic strategy to track changes in the afferent and efferent synaptic connections of developing neocortical interneuron subtypes. We find that Nkx2-1 -derived interneurons possess functional synaptic connections before emerging pyramidal cell networks. Subsequent interneuron circuit maturation is both subtype and layer dependent. Glutamatergic input onto fast spiking (FS), but not somatostatin-positive, non-FS interneurons increases over development. Interneurons of both subtype located in layers (L) 4 and 5b engage in transient circuits that disappear after the somatosensory critical period. These include a pathway mediated by L5b somatostatin-positive interneurons that specifically targets L4 during the first postnatal week. The innervation patterns of immature cortical interneuron circuits are thus neither static nor progressively strengthened but follow a layer-specific choreography of transient connections that differ from those of the adult brain.
机译:GABA能神经元在皮质回路中起关键作用,但对其早期连通性知之甚少。在这里,我们使用谷氨酸解笼和一种新型的光遗传学策略来跟踪发展中的新皮层神经元亚型的传入和传出突触连接的变化。我们发现,Nkx2-1衍生的中间神经元在出现新的锥体细胞网络之前具有功能性突触连接。随后的中间神经元回路成熟取决于子类型和层。快速发展(FS)的谷氨酸能输入会增加,但生长激素抑制素阳性的非FS间神经元输入会增加。位于层(L)4和5b中的两种亚型的中间神经元都参与了瞬态回路,这些瞬态回路在体感临界期后消失。这些包括由L5b生长抑素阳性的中间神经元介导的通路,该通路在产后第一周内特异性靶向L4。因此,未成熟的皮质神经元回路的神经支配模式既不是静态的也不是逐渐增强的,而是遵循与成人大脑不同的瞬态连接的特定层编排。

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