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首页> 外文期刊>Nature Communications >Pioneer glutamatergic cells develop into a morpho-functionally distinct population in the juvenile CA3 hippocampus
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Pioneer glutamatergic cells develop into a morpho-functionally distinct population in the juvenile CA3 hippocampus

机译:先锋型谷氨酸能细胞在青少年CA3海马体中发展为形态功能不同的种群

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摘要

The developing CA3 hippocampus is comprised by highly connected hub neurons that are particularly effective in achieving network synchronization. Functional hub neurons were shown to be exclusively GABAergic, suggesting that the contribution of glutamatergic neurons to physiological synchronization processes at early postnatal stages is minimal. However, without fast GABAergic transmission, a different situation may prevail. In the adult CA3, blocking fast GABAergic transmission induces the generation of network bursts that can be triggered by the stimulation of single pyramidal neurons. Here we revisit the network function of CA3 glutamatergic neurons from a developmental viewpoint, without fast GABAergic transmission. We uncover a sub-population of early-generated glutamatergic neurons that impacts network dynamics when stimulated in the juvenile hippocampus. Additionally, this population displays characteristic morpho-physiological features in the juvenile and adult hippocampus. Therefore, the apparently homogeneous glutamatergic cell population likely displays a morpho-functional diversity rooted in temporal embryonic origins.
机译:发育中的CA3海马由高度连接的中枢神经元组成,这些神经元对实现网络同步特别有效。功能枢纽神经元被证明是唯一的GABA能,表明在出生后早期谷氨酸能神经元对生理同步过程的贡献很小。但是,如果没有快速的GABA能传播,可能会出现不同的情况。在成年CA3中,阻断快速的GABA能传递会诱导网络爆发的产生,该爆发可由单个锥体神经元的刺激触发。在这里,我们从发展的角度重新审视CA3谷氨酸能神经元的网络功能,而没有快速的GABA能传递。我们发现了一个早期生成的谷氨酸能神经元的亚群,当在幼年海马中受到刺激时,它会影响网络动力学。另外,该种群在少年和成年海马中表现出特征性的形态生理特征。因此,表面上均质的谷氨酸能细胞群可能表现出根源于暂时的胚胎起源的形态功能多样性。

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