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周围神经毡:从蜂窝到安全网的巡航。

Perineuronal nets: Cruise from a honeycomb to the safety nets.

机构信息

School of Studies in Neuroscience, Jiwaji University, Gwalior, India; School of Studies in Zoology, Jiwaji University, Gwalior, India.

School of Studies in Neuroscience, Jiwaji University, Gwalior, India.

出版信息

Brain Res Bull. 2022 Nov;190:179-194. doi: 10.1016/j.brainresbull.2022.10.004. Epub 2022 Oct 7.

Abstract

The extracellular matrix (ECM) is a significant component of the brain, constituting up to 20 % of the brain volume and perform multifarious functions during development, maturation and regeneration of the central nervous system (CNS). ECM molecules assemble systematically to form a relatively rigid and unique lattice-like structure, known as perineuronal nets (PNNs). The PNNs usually envelop the cell body and initial axon segment and are characterized by a mesh-like structure extending along dendrites of neurons. PNNs play prominent role in the early neural development, from migration and differentiation to axonal path finding. They regulate plasticity and regeneration in adulthood by surrounding and stabilizing synaptic contacts. In this review, we have focused on the basic structure, distribution and visualization of PNNs and their role during critical periods of development, synaptogenesis and regulation of synaptic plasticity. Furthermore, we have also tried to evaluate the participation of PNNs in the pathophysiology of several brain disorders and their potential in lowering local oxidative stress. Taken together, the concepts outlined in this review emphasize the heterogeneity of PNNs in response to normal physiological and pathological conditions, highlighting the need for future studies on PNNs to target their role in etiology and potential therapeutic interventions in neurological disorders.

摘要

细胞外基质(ECM)是大脑的重要组成部分,构成了大脑体积的 20%左右,在中枢神经系统(CNS)的发育、成熟和再生过程中发挥着多种功能。ECM 分子系统地组装形成相对刚性和独特的网格状结构,称为周围神经网(PNNs)。PNNs 通常包裹神经元的胞体和初始轴突节段,其特征是沿着树突延伸的网状结构。PNNs 在早期神经发育中发挥着重要作用,从迁移和分化到轴突寻路。它们通过包围和稳定突触接触,调节成年期的可塑性和再生。在本综述中,我们重点介绍了 PNNs 的基本结构、分布和可视化及其在发育、突触发生和调节突触可塑性的关键时期的作用。此外,我们还试图评估 PNNs 在几种脑疾病的病理生理学中的参与及其降低局部氧化应激的潜力。总之,本综述中概述的概念强调了 PNNs 对正常生理和病理条件的异质性,突出了未来研究 PNNs 的必要性,以确定其在病因学中的作用以及在神经疾病中的潜在治疗干预作用。

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