Comparison of commissural sprouting in the mouse and rat fascia dentata after entorhinal cortex lesion
- 1 January 2003
- journal article
- research article
- Published by Wiley in Hippocampus
- Vol. 13 (6), 685-699
- https://doi.org/10.1002/hipo.10118
Abstract
Reactive axonal sprouting occurs in the fascia dentata after entorhinal cortex lesion. This sprouting process has been described extensively in the rat, and plasticity‐associated molecules have been identified that might be involved in its regulation. To demonstrate causal relationships between these candidate molecules and the axonal reorganization process, it is reasonable to analyze knockout and transgenic animals after entorhinal cortex lesion, and because gene knockouts are primarily generated in mice, it is necessary to characterize the sprouting response after entorhinal cortex lesion in this species. In the present study, Phaseolus vulgaris‐leucoagglutinin (PHAL) tracing was used to analyze the commissural projection to the inner molecular layer in mice with longstanding entorhinal lesions. Because the commissural projection to the fascia dentata is neurochemically heterogeneous, PHAL tracing was combined with immunocytochemistry for calretinin, a marker for commissural/associational mossy cell axons. Using both techniques singly as well as in combination (double‐immunofluorescence) at the light or electron microscopic level, it could be shown that in response to entorhinal lesion mossy cell axons leave the main commissural fiber plexus, invade the denervated middle molecular layer, and form asymmetric synapses within the denervated zone. Thus, the commissural sprouting response in mice has a considerable translaminar component. This is in contrast to the layer‐specific commissural sprouting observed in rats, in which the overwhelming majority of mossy cell axons remain within their home territory. These data demonstrate an important species difference in the commissural/associational sprouting response between rats and mice that needs to be taken into account in future studies.Keywords
This publication has 78 references indexed in Scilit:
- Molecules Involved in Reactive Sprouting in the HippocampusReviews in the Neurosciences, 2001
- Different Primary Target Cells Are Important for Fiber Lamination in the Fascia Dentata: A Lesson from Reeler Mutant MiceExperimental Neurology, 1999
- Development of Commissural Connections in the Hippocampus of Reeler Mice: Evidence of an Inhibitory Influence of Cajal–Retzius CellsExperimental Neurology, 1999
- Chondroitin sulfate proteoglycans as mediators of axon growth and pathfindingCell and tissue research, 1997
- Boundaries and inhibitory molecules in developing neural tissuesGlia, 1995
- Signals that induce sprouting in the central nervous system: Sprouting is delayed in a strain of mouse exhibiting delayed axonal degenerationExperimental Neurology, 1992
- Reinnervation of cerebellar Purkinje cells by climbing fibres surviving a subtotal lesion of the inferior olive in the adult rat. II. Synaptic organization on reinnervated Purkinje cellsJournal of Comparative Neurology, 1991
- Reinnervation of cerebellar Purkinje cells by climbing fibres surviving a subtotal lesion of the inferior olive in the adult rat. I. Development of new collateral branches and terminal plexusesJournal of Comparative Neurology, 1991
- Astrocytes are important for sprouting in the septohippocampal circuitExperimental Neurology, 1988
- The development, ultrastructure and synaptic connections of the mossy cells of the dentate gyrusJournal of Neurocytology, 1985