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嗅球颗粒细胞的多种突触兴奋模式。

Multiple modes of synaptic excitation of olfactory bulb granule cells.

作者信息

Balu Ramani, Pressler R Todd, Strowbridge Ben W

机构信息

Department of Neurosciences, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Neurosci. 2007 May 23;27(21):5621-32. doi: 10.1523/JNEUROSCI.4630-06.2007.

Abstract

Inhibition generated by granule cells, the most common GABAergic cell type in the olfactory bulb, plays a critical role in shaping the output of the olfactory bulb. However, relatively little is known about the synaptic mechanisms responsible for activating these interneurons in addition to the specialized dendrodendritic synapses located on distal dendrites. Using two-photon guided minimal stimulation in acute rat brain slices, we found that distal and proximal excitatory synapses onto granule cells are functionally distinct. Proximal synapses arise from piriform cortical neurons and facilitate with paired-pulse stimulation, whereas distal dendrodendritic synapses generate EPSCs with slower kinetics that depress with paired stimulation. Proximal cortical feedback inputs can relieve the tonic Mg block of NMDA receptors (NMDARs) at distal synapses and gate dendrodendritic inhibition onto mitral cells. Most excitatory synapses we examined onto granule cells activated both NMDARs and AMPA receptors, whereas a subpopulation appeared to be NMDAR silent. The convergence of two types of excitatory inputs onto GABAergic granule cells provides a novel mechanism for regulating the degree of interglomerular processing of sensory input in the olfactory bulb through piriform cortex/olfactory bulb synaptic interactions.

摘要

颗粒细胞是嗅球中最常见的γ-氨基丁酸能细胞类型,其产生的抑制作用在塑造嗅球输出方面起着关键作用。然而,除了位于远端树突上的特殊树突-树突突触外,关于激活这些中间神经元的突触机制我们了解得相对较少。利用急性大鼠脑片上的双光子引导微刺激,我们发现颗粒细胞上的远端和近端兴奋性突触在功能上是不同的。近端突触源自梨状皮质神经元,成对脉冲刺激可增强其作用,而远端树突-树突突触产生的兴奋性突触后电流(EPSCs)动力学较慢,成对刺激时会受到抑制。近端皮质反馈输入可解除远端突触处NMDA受体(NMDARs)的强直镁离子阻断,并控制对二尖瓣细胞的树突-树突抑制。我们检测的大多数颗粒细胞上的兴奋性突触同时激活了NMDARs和AMPA受体,而一小部分似乎对NMDAR不敏感。两种兴奋性输入汇聚到γ-氨基丁酸能颗粒细胞上,为通过梨状皮质/嗅球突触相互作用调节嗅球中感觉输入的球间处理程度提供了一种新机制。

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