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神经周网对小白蛋白中间神经元、主神经元及脑振荡电生理学的影响:综述

Impact of Perineuronal Nets on Electrophysiology of Parvalbumin Interneurons, Principal Neurons, and Brain Oscillations: A Review.

作者信息

Wingert Jereme C, Sorg Barbara A

机构信息

Program in Neuroscience, Robert S. Dow Neurobiology Laboratories, Legacy Research Institute, Portland, OR, United States.

出版信息

Front Synaptic Neurosci. 2021 May 10;13:673210. doi: 10.3389/fnsyn.2021.673210. eCollection 2021.

Abstract

Perineuronal nets (PNNs) are specialized extracellular matrix structures that surround specific neurons in the brain and spinal cord, appear during critical periods of development, and restrict plasticity during adulthood. Removal of PNNs can reinstate juvenile-like plasticity or, in cases of PNN removal during early developmental stages, PNN removal extends the critical plasticity period. PNNs surround mainly parvalbumin (PV)-containing, fast-spiking GABAergic interneurons in several brain regions. These inhibitory interneurons profoundly inhibit the network of surrounding neurons their elaborate contacts with local pyramidal neurons, and they are key contributors to gamma oscillations generated across several brain regions. Among other functions, these gamma oscillations regulate plasticity associated with learning, decision making, attention, cognitive flexibility, and working memory. The detailed mechanisms by which PNN removal increases plasticity are only beginning to be understood. Here, we review the impact of PNN removal on several electrophysiological features of their underlying PV interneurons and nearby pyramidal neurons, including changes in intrinsic and synaptic membrane properties, brain oscillations, and how these changes may alter the integration of memory-related information. Additionally, we review how PNN removal affects plasticity-associated phenomena such as long-term potentiation (LTP), long-term depression (LTD), and paired-pulse ratio (PPR). The results are discussed in the context of the role of PV interneurons in circuit function and how PNN removal alters this function.

摘要

神经周网(PNNs)是一种特殊的细胞外基质结构,环绕着大脑和脊髓中的特定神经元,在发育的关键期出现,并在成年期限制可塑性。去除神经周网可以恢复类似幼年的可塑性,或者在发育早期去除神经周网的情况下,去除神经周网会延长关键可塑性时期。在几个脑区,神经周网主要环绕着含有小白蛋白(PV)的、快速放电的γ-氨基丁酸能中间神经元。这些抑制性中间神经元深刻地抑制周围神经元网络——它们与局部锥体神经元有着复杂的联系,并且它们是多个脑区产生的γ振荡的关键促成因素。在其他功能中,这些γ振荡调节与学习、决策、注意力、认知灵活性和工作记忆相关的可塑性。去除神经周网增加可塑性的详细机制才刚刚开始被理解。在这里,我们综述了去除神经周网对其潜在的PV中间神经元和附近锥体神经元的几种电生理特征的影响,包括内在和突触膜特性的变化、脑振荡,以及这些变化如何可能改变与记忆相关信息的整合。此外,我们还综述了去除神经周网如何影响与可塑性相关的现象,如长时程增强(LTP)、长时程抑制(LTD)和配对脉冲比率(PPR)。我们在PV中间神经元在回路功能中的作用以及去除神经周网如何改变这种功能的背景下讨论了这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b963/8141737/a03002746d59/fnsyn-13-673210-g0001.jpg

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