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嗅球颗粒细胞上皮质GABA能突触的短期可塑性受内源性大麻素调节。

Short-Term Plasticity in Cortical GABAergic Synapses on Olfactory Bulb Granule Cells Is Modulated by Endocannabinoids.

作者信息

Zhou Fu-Wen, Puche Adam C

机构信息

Department of Anatomy and Neurobiology, Program in Neurosciences, University of Maryland School of Medicine, Baltimore, MD, United States.

出版信息

Front Cell Neurosci. 2021 Feb 9;15:629052. doi: 10.3389/fncel.2021.629052. eCollection 2021.

Abstract

Olfactory bulb and higher processing areas are synaptically interconnected, providing rapid regulation of olfactory bulb circuit dynamics and sensory processing. Short-term plasticity changes at any of these synapses could modulate sensory processing and potentially short-term sensory memory. A key olfactory bulb circuit for mediating cortical feedback modulation is granule cells, which are targeted by multiple cortical regions including both glutamatergic excitatory inputs and GABAergic inhibitory inputs. There is robust endocannabinoid modulation of excitatory inputs to granule cells and here we explored whether there was also endocannabinoid modulation of the inhibitory cortical inputs to granule cells. We expressed light-gated cation channel channelrhodopsin-2 (ChR2) in GABAergic neurons in the horizontal limb of the diagonal band of Broca (HDB) and their projections to granule cells in olfactory bulb. Selective optical activation of ChR2 positive axons/terminals generated strong, frequency-dependent short-term depression of GABA -mediated-IPSC in granule cells. As cannabinoid type 1 (CB1) receptor is heavily expressed in olfactory bulb granule cell layer (GCL) and there is endogenous endocannabinoid release in GCL, we investigated whether activation of CB1 receptor modulated the HDB IPSC and short-term depression at the HDB→granule cell synapse. Activation of the CB1 receptor by the exogenous agonist Win 55,212-2 significantly decreased the peak amplitude of individual IPSC and decreased short-term depression, while blockade of the CB1 receptor by AM 251 slightly increased individual IPSCs and increased short-term depression. Thus, we conclude that there is tonic endocannabinoid activation of the GABAergic projections of the HDB to granule cells, similar to the modulation observed with glutamatergic projections to granule cells. Modulation of inhibitory synaptic currents and frequency-dependent short-term depression could regulate the precise balance of cortical feedback excitation and inhibition of granule cells leading to changes in granule cell mediated inhibition of olfactory bulb output to higher processing areas.

摘要

嗅球与更高层次的处理区域通过突触相互连接,从而对嗅球回路动力学和感觉处理进行快速调节。这些突触中任何一处的短期可塑性变化都可能调节感觉处理,并可能影响短期感觉记忆。介导皮质反馈调节的一个关键嗅球回路是颗粒细胞,它受到多个皮质区域的靶向作用,包括谷氨酸能兴奋性输入和γ-氨基丁酸能抑制性输入。颗粒细胞的兴奋性输入存在强大的内源性大麻素调节,在此我们探究颗粒细胞的皮质抑制性输入是否也存在内源性大麻素调节。我们在布罗卡斜角带水平支(HDB)的γ-氨基丁酸能神经元及其向嗅球颗粒细胞的投射中表达了光门控阳离子通道通道视紫红质-2(ChR2)。对ChR2阳性轴突/终末的选择性光激活在颗粒细胞中产生了强烈的、频率依赖性的γ-氨基丁酸介导的抑制性突触后电流(IPSC)短期抑制。由于大麻素1型(CB1)受体在嗅球颗粒细胞层(GCL)中大量表达,且GCL中存在内源性大麻素释放,我们研究了CB1受体的激活是否调节HDB的IPSC以及HDB→颗粒细胞突触处的短期抑制。外源性激动剂Win 55,212-2对CB1受体的激活显著降低了单个IPSC的峰值幅度,并减少了短期抑制,而AM 251对CB1受体的阻断则略微增加了单个IPSC并增强了短期抑制。因此,我们得出结论,HDB向颗粒细胞的γ-氨基丁酸能投射存在内源性大麻素的紧张性激活,这与在颗粒细胞的谷氨酸能投射中观察到的调节类似。抑制性突触电流和频率依赖性短期抑制的调节可能会调节颗粒细胞皮质反馈兴奋和抑制的精确平衡,从而导致颗粒细胞介导的对嗅球向更高层次处理区域输出的抑制发生变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0730/7899975/8a3485561f87/fncel-15-629052-g001.jpg

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