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基于聚集蛋白聚糖的细胞外基质在马达加斯加小刺猬(Echinops telfairi Martin,1838)中表现出独特的皮质特征和哺乳动物大脑组织的保守皮质下原则。

Aggrecan-based extracellular matrix shows unique cortical features and conserved subcortical principles of mammalian brain organization in the Madagascan lesser hedgehog tenrec (Echinops telfairi Martin, 1838).

机构信息

Paul Flechsig Institute for Brain Research, University of Leipzig, Jahnallee 59, D-04109 Leipzig, Germany.

出版信息

Neuroscience. 2010 Feb 3;165(3):831-49. doi: 10.1016/j.neuroscience.2009.08.018. Epub 2009 Aug 12.

DOI:10.1016/j.neuroscience.2009.08.018
PMID:19682554
Abstract

The Madagascan tenrecs (Afrotheria), an ancient mammalian clade, are characterized by unique brain anatomy. Striking features are an expanded paleocortex but a small and poorly differentiated neocortex devoid of a distinct granular layer IV. To investigate the organization of cortical areas we analyzed extracellular matrix components in perineuronal nets (PNs) using antibodies to aggrecan, lectin staining and hyaluronan-binding protein. Selected subcortical regions were studied to correlate the cortical patterns with features in evolutionary conserved systems. In the neocortex, paleocortex and hippocampus PNs were associated with nonpyramidal neurons. Quantitative analysis in the cerebral cortex revealed area-specific proportions and laminar distribution patterns of neurons ensheathed by PNs. Cortical PNs showed divergent structural phenotypes. Diffuse PNs forming a cotton wool-like perisomatic rim were characteristic of the paleocortex. These PNs were associated with a dense pericellular plexus of calretinin-immunoreactive fibres. Clearly contoured PNs were devoid of a calretinin-positive plexus and predominated in the neocortex and hippocampus. The organization of the extracellular matrix in subcortical nuclei followed the widely distributed mammalian type. We conclude that molecular properties of the aggrecan-based extracellular matrix are conserved during evolution of mammals; however, the matrix scaffold is adapted to specific wiring patterns of cortical and subcortical neuronal networks.

摘要

马达加斯加鼩负鼠(有袋下纲)是一种古老的哺乳动物类群,其大脑解剖结构具有独特性。显著特征是古皮质扩张,但新皮质小且分化不良,缺乏明显的颗粒层 IV。为了研究皮质区的组织,我们使用针对聚集蛋白聚糖、凝集素染色和透明质酸结合蛋白的抗体分析了神经元周网络(PNs)中的细胞外基质成分。选择了一些皮质下区域进行研究,以将皮质模式与进化保守系统中的特征相关联。在新皮质、古皮质和海马中,PNs 与非锥体神经元相关。在大脑皮质中的定量分析显示,PN 包绕的神经元具有特定区域和分层分布模式。皮质 PNs 表现出不同的结构表型。形成棉絮状周体边缘的弥漫性 PNs 是古皮质的特征。这些 PNs 与 calretinin 免疫反应纤维的密集胞周丛相关联。无 calretinin 阳性丛的清晰轮廓 PNs 主要存在于新皮质和海马中。皮质下核的细胞外基质组织遵循广泛分布的哺乳动物类型。我们得出结论,基于聚集蛋白聚糖的细胞外基质的分子特性在哺乳动物进化过程中是保守的;然而,基质支架适应于皮质和皮质下神经网络的特定布线模式。

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Aggrecan-based extracellular matrix shows unique cortical features and conserved subcortical principles of mammalian brain organization in the Madagascan lesser hedgehog tenrec (Echinops telfairi Martin, 1838).基于聚集蛋白聚糖的细胞外基质在马达加斯加小刺猬(Echinops telfairi Martin,1838)中表现出独特的皮质特征和哺乳动物大脑组织的保守皮质下原则。
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Spatial relationship of lectin-labelled extracellular matrix and glutamine synthetase-immunoreactive astrocytes in rat cortical forebrain regions.大鼠皮质前脑区域中凝集素标记的细胞外基质与谷氨酰胺合成酶免疫反应性星形胶质细胞的空间关系。
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Perineuronal nets provide a polyanionic, glia-associated form of microenvironment around certain neurons in many parts of the rat brain.神经周网在大鼠大脑许多部位的某些神经元周围提供了一种与胶质细胞相关的聚阴离子形式的微环境。
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