Literature DB >> 7929913

Dendritic development of dentate granule cells in the absence of their specific extrinsic afferents.

S Zafirov1, B Heimrich, M Frotscher.   

Abstract

Dendrites and spines are postsynaptic structures that develop in association with presynaptic fibers. Recent studies have shown that granule cells of the fascia dentata survive in slice cultures and differentiate in a manner known from in situ studies. However, all extrinsic afferent fibers are absent under culture conditions. In the present study, we study whether dendrites and spines of granule cells in slice cultures differentiate normally, although they are not contacted by their normal layer-specific afferents. Slices of hippocampus were prepared from rat pups at the day of birth. After 5, 10, 15, and 20 days of incubation, granule cells in these cultures were Golgi impregnated. For comparison, perfusion-fixed hippocampal sections of 5-, 10-, 15-, and 20-day-old rats were impregnated the same way. Our results show that the total density of spines on granule cell dendrites in culture increased as in perfusion-fixed animals. However, after 20 days of incubation, the absolute number of dendritic spines on cultured neurons was reduced because of a reduction of peripheral dendrites. This reduction was accompanied by an increase in the number of stem dendrites originating from the perikaryon. The density of spines on these proximal dendrites was larger in cultured granule cells than in controls. Our results suggest that the lack of major extrinsic (entorhinal) afferents that normally terminate on peripheral granule cell dendrites causes retraction of these dendrites. At the same time, there is growth of proximal dendritic portions. Proximal dendrites are targets of associational fibers, which are known to sprout under these culture conditions.

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Year:  1994        PMID: 7929913     DOI: 10.1002/cne.903450312

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  10 in total

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2.  Transmembrane protein 108 is required for glutamatergic transmission in dentate gyrus.

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3.  Morphometry of hilar ectopic granule cells in the rat.

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Journal:  J Comp Neurol       Date:  2011-04-15       Impact factor: 3.215

4.  Enhanced CREB phosphorylation in immature dentate gyrus granule cells precedes neurotrophin expression and indicates a specific role of CREB in granule cell differentiation.

Authors:  R A Bender; J C Lauterborn; C M Gall; W Cariaga; T Z Baram
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5.  Borna disease virus replication in organotypic hippocampal slice cultures from rats results in selective damage of dentate granule cells.

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6.  Afferent innervation influences the development of dendritic branches and spines via both activity-dependent and non-activity-dependent mechanisms.

Authors:  A H Kossel; C V Williams; M Schweizer; S B Kater
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7.  Standard antiepileptic drugs fail to block epileptiform activity in rat organotypic hippocampal slice cultures.

Authors:  K Albus; A Wahab; U Heinemann
Journal:  Br J Pharmacol       Date:  2008-04-14       Impact factor: 8.739

8.  Morphological alterations of hippocampal pyramidal neurons heterotopically transplanted into the somatosensory cortex of adult rats: a quantitative Golgi study.

Authors:  M Plaschke; M Souphanthong; J Wenzel
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9.  Functional and structural properties of dentate granule cells with hilar basal dendrites in mouse entorhino-hippocampal slice cultures.

Authors:  Denise Becker; Laurent Maximilian Willems; Matej Vnencak; Nadine Zahn; Gerlind Schuldt; Peter Jedlicka; Nicola Maggio; Thomas Deller; Andreas Vlachos
Journal:  PLoS One       Date:  2012-11-07       Impact factor: 3.240

10.  Properties of doublecortin expressing neurons in the adult mouse dentate gyrus.

Authors:  Jay Spampanato; Robert K Sullivan; Fabrice R Turpin; Perry F Bartlett; Pankaj Sah
Journal:  PLoS One       Date:  2012-09-05       Impact factor: 3.240

  10 in total

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