Postnatal development of perineuronal nets in wild‐type mice and in a mutant deficient in tenascin‐R
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Summary
It is concluded that the lack of TN‐R initially and continuously disturbs the molecular scaffolding of extracellular matrix components in perineuronal nets and may interfere with the development of the specific micromilieu of the ensheathed neurons and adjacent glial cells and may also permanently change their functional properties.
- Type
- article
- Published
- 2000-12-25
- Cited by
- 304
- References
- 79
- OpenAlex
- https://openalex.org/W1968455009
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25859181
Keywords
Perineuronal net, Biology, Versican, Chondroitin sulfate, Extracellular matrix
References
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- Neuronal populations stained with the monoclonal antibody Cat-301 in the mammalian cerebral cortex and thalamus
- Developmental patterns of proteoglycan-containing extracellular matrix in perineuronal nets and neuropil of the postnatal rat brain
- Purification, characterization and developmental expression of a brain-specific chondroitin sulfate proteoglycan, 6B4 proteoglycan/phosphacan.
- Selective staining of a population of parvalbumin-containing GABAergic neurons in the rat cerebral cortex by lectins with specific affinity for terminal N-acetylgalactosamine.
- High Affinity Binding and Overlapping Localization of Neurocan and Phosphacan/Protein-tyrosine Phosphatase-ζ/β with Tenascin-R, Amphoterin, and the Heparin-binding Growth-associated Molecule*
- Development of Cat‐301 immunoreactivity in auditory brainstem nuclei of the gerbil
- Lecticans: organizers of the brain extracellular matrix
- Postnatal appearance of glycoconjugate with terminal N-acetylgalactosamine on the surface of selected neurons in mouse brain.
- Developmentally regulated expression of a brain specific species of chondroitin sulfate proteoglycan, neurocan, identified with a monoclonal antibody IG2 in the rat cerebrum.
- Chondroitin sulfate proteoglycans in the developing central nervous system. I. Cellular sites of synthesis of neurocan and phosphacan
- The C-type lectin domains of lecticans, a family of aggregating chondroitin sulfate proteoglycans, bind tenascin-R by protein-protein interactions independent of carbohydrate moiety.
- Relationship between astrocytic processes and “Perineuronal nets” in rat neocortex
- A monoclonal antibody identifies a novel epitope surrounding a subpopulation of the mammalian central neurons.
- Versican, a hyaluronate‐binding proteoglycan of embryonal precartilaginous mesenchyma, is mainly expressed postnatally in rat brain
- Immunohistochemical localization of myelin-associated glycoprotein isoforms during the development in the mouse brain.
Cited by
- Proteoglycans in the central nervous system: Plasticity, regeneration and their stimulation with chondroitinase ABC
- Role of tenascins in the ECM of gliomas
- The brain's extracellular matrix and its role in synaptic plasticity.
- Extracellular matrix and synaptic functions.
- Perineuronal nets increase inhibitory GABAergic currents during the critical period in rats.
- Модуляция биоэлектрической активности первичной культуры гиппокампа посредством энзиматического воздействия на внеклеточный матрикс
- Rôle de la reelin dans la plasticité des structures stratifiées du système nerveux central
- Distribution and functions of the extracellular matrix protein matrilin-2 in the nervous system of mice
- Synantocytes: New functions for novel NG2 expressing glia
- Quantitative Morphological Analyses of the Striatum and Cerebellum of Tenascin-R deficient mice
- In vitro and in vivo analysis of the functional significance of Tenascin-R and -C, CD24 and Semaphorin3A for neural stem cell behaviour and axonal pathfinding in Mus musculus (L.) 1758 and Rattus norvegicus (Berkenhout) 1769
- Immunolocalization of laminin-α1-like antigens around synapses in mouse cerebellar perineuronal nets
- In vitro modeling of perineuronal nets: hyaluronan synthase and link protein are necessary for their formation and integrity
- N-syndecan and HB-GAM in neural migration and differentiation : Modulation of growth factor activity in brain
- The extracellular matrix molecule brevican is an integral component of the machinery mediating fast synaptic transmission at the calyx of Held
- Regulation of somatosensory cortex development downstream of glutamate
- Characterisation of carriers and receptors of the LewisX glycan in the nervous system of mice (Mus musculus L., 1758)
- From brain formation to plasticity: Insights on Otx2 homeoprotein
- Selective Expression of CSPG Receptors PTPσ and LAR in Poorly Regenerating Reticulospinal Neurons of Lamprey
- Brevican isoforms associate with neural membranes
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