Comparative marker analysis of the ependymocytes of the subcommissural organ in four different mammalian species
- 1 January 1989
- journal article
- research article
- Published by Springer Nature in Cell and tissue research
- Vol. 257 (2) , 255-262
- https://doi.org/10.1007/bf00261828
Abstract
The subcommissural organ (SCO), classified as one of the circumventricular organs, is composed mainly of modified ependymal cells, attributable to a glial lineage. Nevertheless, in the rat, these cells do not possess glial markers such as glial fibrillary acidic protein (GFAP), protein S100, or the enzyme glutamine synthetase (GS). They receive a synaptic 5-HT input and show pharmacological properties for uptake of GABA resembling the uptake mechanism of neurons. In this study, we examine the phenotype of several mammalian SCO (cat, mouse, rabbit) and compare them with the corresponding features of the rat SCO. In all these species, the SCO ependymocytes possess vimentin as an intermediate filament, but never express GFAP or neurofilament proteins. They do not contain GS as do glial cells involved in GABA metabolism, and when they contain protein S100 (rabbit, mouse), its rate is low in comparison to classical glial or ependymal cells. Thus, these ependymocytes display characteristics that differentiate them from other types of glial cells (astrocytes, epithelial ependymocytes and tanycytes). Striking interspecies differences in the capacity of SCO-ependymocytes for uptake of GABA might be related to their innervation and suggest a species-dependent plasticity in their function.Keywords
This publication has 55 references indexed in Scilit:
- Autoradiographic study of the production of secretory material by the subcommissural organ of frogs (Rana temporaria) after injection of several radioactive precursors, with special reference to the glycosilation and turnover rate of the secretory materialCell and tissue research, 1987
- Astroglial CellsClinical Neuropharmacology, 1984
- Cerebellar astroglial cells in primary culture: Expression of different morphological appearances and different ability to take up [3H]d-aspartate and [3H]GABADevelopmental Brain Research, 1983
- Temporal relationship between the appearance of vimentin and neural tube developmentDevelopmental Brain Research, 1983
- Novel neuron-related regulatory mechanisms for astrocytic glutamate and GABA high affinity uptakeNeuroscience Letters, 1983
- Regional development of glutamine synthetase activity in the rat brain and its association with the differentiation of astrocytesDevelopmental Brain Research, 1983
- Immunohistochemical evidence for neuronal and non-neuronal synthesis of GABA in the rat subcommissural organNeurochemistry International, 1983
- Localization of vimentin, the nonspecific intermediate filament protein, in embryonal glia and in early differentiating neuronsDevelopmental Biology, 1982
- Radioautographic evidence for an innervation of the subcommissural organ by GABA-containing nerve fibresJournal of Neurocytology, 1981
- Serotoninergic synapses on ependymal and hypendymal cells of the rat subcommissural organJournal of Neurocytology, 1979