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神经基质组对兴奋/抑制平衡的调节

Regulation of the E/I-balance by the neural matrisome.

作者信息

Mueller-Buehl Cornelius, Wegrzyn David, Bauch Juliane, Faissner Andreas

机构信息

Department of Cell Morphology and Molecular Neurobiology, Ruhr-University Bochum, Bochum, Germany.

出版信息

Front Mol Neurosci. 2023 Apr 18;16:1102334. doi: 10.3389/fnmol.2023.1102334. eCollection 2023.

Abstract

In the mammalian cortex a proper excitatory/inhibitory (E/I) balance is fundamental for cognitive functions. Especially γ-aminobutyric acid (GABA)-releasing interneurons regulate the activity of excitatory projection neurons which form the second main class of neurons in the cortex. During development, the maturation of fast-spiking parvalbumin-expressing interneurons goes along with the formation of net-like structures covering their soma and proximal dendrites. These so-called perineuronal nets (PNNs) represent a specialized form of the extracellular matrix (ECM, also designated as matrisome) that stabilize structural synapses but prevent the formation of new connections. Consequently, PNNs are highly involved in the regulation of the synaptic balance. Previous studies revealed that the formation of perineuronal nets is accompanied by an establishment of mature neuronal circuits and by a closure of critical windows of synaptic plasticity. Furthermore, it has been shown that PNNs differentially impinge the integrity of excitatory and inhibitory synapses. In various neurological and neuropsychiatric disorders alterations of PNNs were described and aroused more attention in the last years. The following review gives an update about the role of PNNs for the maturation of parvalbumin-expressing interneurons and summarizes recent findings about the impact of PNNs in different neurological and neuropsychiatric disorders like schizophrenia or epilepsy. A targeted manipulation of PNNs might provide an interesting new possibility to indirectly modulate the synaptic balance and the E/I ratio in pathological conditions.

摘要

在哺乳动物的皮质中,适当的兴奋/抑制(E/I)平衡是认知功能的基础。特别是释放γ-氨基丁酸(GABA)的中间神经元调节兴奋性投射神经元的活动,兴奋性投射神经元构成皮质中第二类主要的神经元。在发育过程中,表达小白蛋白的快速放电中间神经元的成熟与覆盖其胞体和近端树突的网状结构的形成同时发生。这些所谓的神经元周围网络(PNNs)代表细胞外基质(ECM,也称为基质体)的一种特殊形式,它稳定结构突触,但阻止新连接的形成。因此,PNNs高度参与突触平衡的调节。先前的研究表明,神经元周围网络的形成伴随着成熟神经元回路的建立和突触可塑性关键窗口的关闭。此外,已经表明PNNs对兴奋性和抑制性突触的完整性有不同的影响。在各种神经和神经精神疾病中,PNNs的改变已有描述,并且在过去几年中引起了更多关注。以下综述介绍了PNNs在表达小白蛋白的中间神经元成熟中的作用的最新情况,并总结了关于PNNs在不同神经和神经精神疾病(如精神分裂症或癫痫)中的影响的最新发现。对PNNs进行有针对性的操纵可能为在病理条件下间接调节突触平衡和E/I比率提供一种有趣的新可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d78/10151766/a00458761aa3/fnmol-16-1102334-g001.jpg

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