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Keywords: Proliferation
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Journal Articles
Dev Neurosci (2018) 40 (2): 162–174.
Published Online: 15 May 2018
... elucidated. A major determinant of growth and development of the cerebellum is proliferation and subsequent migration of cerebellar granule cells. Our objective was to determine whether IUGR, induced by chronic placental insufficiency (CPI) in guinea pigs, results in abnormal cerebellar development due...
Journal Articles
Journal Articles
Dev Neurosci (2011) 33 (1): 1–13.
Published Online: 02 December 2010
..., instructions or products referred to in the content or advertisements. Tailless Tlx Nuclear receptor Neural stem cell PTEN Atrophin Lysine-specific histone demethylase 1 Histone deacetylase Proliferation Differentiation National Institutes of Health (NIH) 10.13039/100000002...
Journal Articles
Journal Articles
Dev Neurosci (1983) 6 (1): 26–31.
Published Online: 29 June 2009
...Liane Bologa; Angele Z'graggen; Norbert Herschkowitz We investigated whether in cultures of mechanically dissociated brain cells from newborn mice the reduction of the number of oligodendrocytes influences their proliferation rate. 14-day-old cultures were subjected to complement-dependent anti...
Journal Articles
Dev Neurosci (1983) 6 (3): 169–183.
Published Online: 29 June 2009
... to a period of neuronal proliferation in our culture conditions, whereas contamination by glial cells is very low. Cell counts and measurements of [ 3 H]-thymidine incorporation have been used as an indicator of cell proliferation. With increasing concentrations of whole, dialyzed or desalted FCS...
Journal Articles
Dev Neurosci (1982) 5 (1): 77–91.
Published Online: 14 December 2007
... of mouse brain or pituitary fibroblast growth factor but not mouse epidermal growth factor are very potent mouse Schwann cell mitogens. These mitogenic effects of serum and fibroblast growth factor have not been reported for rat Schwann cells. Schwann cells Proliferation Fibroblast growth factor...
Journal Articles
Dev Neurosci (2007) 29 (6): 468–479.
Published Online: 20 November 2006
...Kaoru Sugimoto; Koji Okabayashi; Ayako Sedohara; Tadayoshi Hayata; Makoto Asashima In early neural development, active cell proliferation and apoptosis take place concurrent with cell differentiation, but how these processes are coordinated remains unclear. In this study, we characterized the role...
Journal Articles
Dev Neurosci (2003) 25 (2-4): 245–256.
Published Online: 15 September 2003
... in neuronal proliferation, migration and differentiation, and in preventing apoptotic cell death. 15 9 2003 © 2003 S. Karger AG, Basel 2003 Copyright / Drug Dosage / Disclaimer Copyright: All rights reserved. No part of this publication may be translated into other languages, reproduced...
Journal Articles
Journal Articles
Dev Neurosci (2002) 24 (2-3): 197–207.
Published Online: 28 October 2002
... the early postnatal stages when oligodendrocytes mature to generate myelin producing cell. In addition to these suggestions, we have previously provided in vitro data showing that iron affects both the proliferation and differentiation of glial precursor cells leading to a disruption in the generation...
Journal Articles
Dev Neurosci (2002) 24 (1): 14–23.
Published Online: 19 July 2002
... include regulation of proliferation, survival, maturation, neurite outgrowth, and expression of trophic factors, cytokines and trk receptors. The presence of other growth factors can also markedly affect these actions of PACAP, for example, reversing PACAP’s effect from proliferative to antiproliferative...
Journal Articles
Journal Articles
Dev Neurosci (2001) 23 (4-5): 338–345.
Published Online: 14 December 2001
...Shenandoah Robinson; Linda A. Franic Oligodendrocyte precursor proliferation is precisely regulated spatially and temporally during development to allow optimal myelination of the central nervous system (CNS). We propose that a paracrine regulatory pathway involving the chemokine GRO1 and platelet...
Journal Articles
Dev Neurosci (2000) 22 (1-2): 34–43.
Published Online: 15 February 2000
... and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements. Gap junction Proliferation Migration Neurogenesis Subventricular zone Postnatal neurogenesis Brain slices Dev...
Journal Articles
Journal Articles
Dev Neurosci (1998) 20 (6): 512–517.
Published Online: 24 December 1998
.../acetylcholine-receptor-including activity are products of neurons and mediate proliferation, differentiation and gene expression in Schwann cells of experimental animals. In the present study, the efficacy of different isoforms of NDF in stimulating human Schwann cell proliferation is investigated in Schwann...
Journal Articles
Dev Neurosci (1997) 19 (1): 17–22.
Published Online: 26 February 1997
.... Neocortical histogenesis Proliferation Pseudostratified ventricular epithelium Mouse Cell cycle Q fraction Developmental Neuroscience Dev Neurosci 1997;19:17-22 Received: Mayó, 1996 Accepted: May 20.1996 T. Takahashi*'b R.S. Nowakowskic V.S. Caviness, Jr. b Department of Pediatrics, Keio University...
Journal Articles
Dev Neurosci (1991) 13 (3): 130–137.
Published Online: 10 September 1991
... of the central nervous system and are elevated in MS. We have investigated the changes in cell morphology and cell number induced by IL1 and TNFα in purified and mixed populations of primary rat brain microglia, astrocytes, oligodendrocytes, and glial precursors. Depending on the target population, proliferation...
Journal Articles
Dev Neurosci (1989) 11 (2): 140–148.
Published Online: 13 June 1989
... controlling or limiting remyelination. Successful remyelination depends on an adequate number of oligodendrocytes, which may be provided either by proliferation of endogenous cells or by delivery of exogenous oligodendrocytes, which have been shown to be capable of remyelinating axons. It has recently been...