细胞外基质和神经周围网络的破坏调节细胞外空间体积和几何形状。

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Eva Syková, Ivan Voříšek, Zenon Starčuk, Jiří Kratochvíla, Iveta Pavlova, Yuki Ichikawa, Jessica C F Kwok, Eva Kmoníčková, Svitlana Myronchenko, Tomáš Hromádka, Tomáš Smolek, Martin Avila, Neha Basheer, Norbert Žilka
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引用次数: 0

摘要

细胞外基质(Extracellular matrix, ECM)是一种由大分子组成的网络,具有两种形式——神经周围网络(pnn)和弥漫性ECM (dECM)——它们影响大脑发育、突触形成、神经可塑性、中枢神经系统损伤和神经退行性疾病的进展。ECM重塑可以影响神经活性物质在细胞外空间(ECS)扩散介导的突触外传递。在这项研究中,我们分析了pnn和dECM如何影响大脑的扩散。在给大鼠口服透明质酸合成抑制剂4- methylumbellliferone (4-MU)两个月后,我们发现PNNs、透明质酸、硫酸软骨素蛋白聚糖和胶质纤维酸性蛋白(GFAP)的染色下调。这些变化在4个月和6个月后增强,在正常饮食后是可逆的。形态计量学分析进一步显示星形胶质细胞萎缩。采用实时离子电泳法,ECM失调导致体感觉皮层(SC) ECS体积分数α增加35%,从对照组的α = 0.20增加到4 mu饮食后的α = 0.27。扩散加权磁共振成像(DW-MRI)显示皮质、海马、丘脑、苍白球和脊髓的平均扩散率(MD)和分数各向异性(FA)降低。本研究表明,由于PNNs和dECM的调节,ECS体积增加,FA损失和星形胶质细胞的变化可能影响突触外传递,细胞间通讯和神经可塑性。意义声明口服4-甲基苯甲醚酮诱导的透明质酸合成抑制破坏神经周围网络(PNNs),弥漫性细胞外基质(dECM),减少星形胶质细胞网络,增加细胞外空间(ECS)体积并改变ECS几何形状。弥散屏障的改变对成人脑和脊髓弥散参数有显著影响。我们的研究结果表明,ECM的破坏允许更有效的离子、神经递质和神经活性物质在ECS中运输,从而通过突触外传递确保更广泛的神经元间通信。pnn的破坏和ECS体积的增加可导致突触之间的串扰增强,递质溢出,形成新的突触接触,从而增加突触的可塑性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disruption of Extracellular Matrix and Perineuronal Nets Modulates Extracellular Space Volume and Geometry.

Extracellular matrix (ECM) is a network of macromolecules which has two forms-perineuronal nets (PNNs) and a diffuse ECM (dECM)-both influence brain development, synapse formation, neuroplasticity, CNS injury and progression of neurodegenerative diseases. ECM remodeling can influence extrasynaptic transmission, mediated by diffusion of neuroactive substances in the extracellular space (ECS). In this study we analyzed how disrupted PNNs and dECM influence brain diffusibility. Two months after oral treatment of rats with 4-methylumbelliferone (4-MU), an inhibitor of hyaluronan (HA) synthesis, we found downregulated staining for PNNs, HA, chondroitin sulfate proteoglycans, and glial fibrillary acidic protein. These changes were enhanced after 4 and 6 months and were reversible after a normal diet. Morphometric analysis further indicated atrophy of astrocytes. Using real-time iontophoretic method dysregulation of ECM resulted in increased ECS volume fraction α in the somatosensory cortex by 35%, from α = 0.20 in control rats to α = 0.27 after the 4-MU diet. Diffusion-weighted magnetic resonance imaging revealed a decrease of mean diffusivity and fractional anisotropy (FA) in the cortex, hippocampus, thalamus, pallidum, and spinal cord. This study shows the increase in ECS volume, a loss of FA, and changes in astrocytes due to modulation of PNNs and dECM that could affect extrasynaptic transmission, cell-to-cell communication, and neural plasticity.

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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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