McKnight Brain Institute and Department of Neurobiology, University of Alabama at Birmingham, Birmingham, Alabama 35294, and Department of Internal Medicine, Section of Human Physiology, University of Perugia, 06126 Perugia, Italy.
J Neurosci. 2013 Dec 4;33(49):19131-42. doi: 10.1523/JNEUROSCI.2289-13.2013.
Adult neurogenesis continually produces a small population of immature granule cells (GCs) within the dentate gyrus. The physiological properties of immature GCs distinguish them from the more numerous mature GCs and potentially enables distinct network functions. To test how the changing properties of developing GCs affect spiking behavior, we examined synaptic responses of mature and immature GCs in hippocampal slices from adult mice. Whereas synaptic inhibition restricted GC spiking at most stages of maturation, the relative influence of inhibition, excitatory synaptic drive, and intrinsic excitability shifted over the course of maturation. Mature GCs received profuse afferent innervation such that spiking was suppressed primarily by inhibition, whereas immature GC spiking was also limited by the strength of excitatory drive. Although the input resistance was a reliable indicator of maturation, it did not determine spiking probability at immature stages. Our results confirm the existence of a transient period during GC maturation when perforant path stimulation can generate a high probability of spiking, but also reveal that immature GC excitability is tempered by functional synaptic inhibition and reduced excitatory innervation, likely maintaining the sparse population activity observed in vivo.
成年神经发生持续在齿状回内产生一小群未成熟的颗粒细胞(GCs)。未成熟 GCs 的生理特性使它们与数量更多的成熟 GCs 区分开来,并可能具有独特的网络功能。为了测试发育中的 GCs 不断变化的特性如何影响尖峰行为,我们在成年小鼠的海马切片中检查了成熟和未成熟 GCs 的突触反应。尽管突触抑制在成熟的大多数阶段都限制了 GC 的尖峰,但抑制、兴奋性突触驱动和内在兴奋性的相对影响在成熟过程中发生了变化。成熟的 GC 接收丰富的传入神经支配,因此尖峰主要受到抑制的抑制,而未成熟 GC 的尖峰也受到兴奋性驱动的强度限制。尽管输入电阻是成熟的可靠指标,但它并不能确定未成熟阶段的尖峰概率。我们的结果证实了 GC 成熟过程中存在一个短暂的时期,在此期间,穿通通路刺激可以产生高概率的尖峰,但也揭示了未成熟 GC 的兴奋性受到功能性突触抑制和兴奋性传入减少的调节,这可能维持了在体内观察到的稀疏群体活动。