Trying to understand axonal regeneration in the CNS of fish
- 1 July 1992
- journal article
- review article
- Published by Wiley in Journal of Neurobiology
- Vol. 23 (5) , 537-550
- https://doi.org/10.1002/neu.480230508
Abstract
In contrast to the situation in mammals and birds, neurons in the central nervous system (CNS) of fish—such as the retinal ganglion cells—are capable of regenerating their axons and restoring vision. Special properties of the glial cells and the neurons of the fish visual pathway appear to contribute to the success of axonal regeneration. The fish oligodendrocytes lack the axon growth inhibiting molecules that interfere with axonal extension in mammals. Instead, fish optic nerve oligodendrocytes support—at least in vitro—axonal elongation of fish as well as that of rat retinal axons. Moreover, the fish retinal ganglion cells re‐express upon injury a set of growth associated cell surface molecules and equip the regenerating axons throughout their path and up into their target, the tectum opticum with these molecules. This may indicate that the injured fish ganglion cells reactivate the cellular machinery necessary for axonal regrowth and pathfinding. Furthermore, the target itself provides positional marker molecules even in adult fish. These marker molecules are required to guide the regenerating axons back to their retinotopic home territory within the tectum. © 1992 John Wiley & Sons, Inc.Keywords
This publication has 52 references indexed in Scilit:
- DM-GRASP, a novel immunoglobulin superfamily axonal surface protein that supports neurite extensionNeuron, 1991
- Growth of regenerating goldfish axons is inhibited by rat oligodendrocytes and CNS myelin but not but not by goldfish optic nerve tract oligodendrocytelike cells and fish CNS myelinJournal of Neuroscience, 1991
- Oligodendrocytes arrest neurite growth by contact inhibitionJournal of Neuroscience, 1990
- Growth of adult rat retinal ganglion cell neurites on astrocytesGlia, 1990
- Evidence for the stability of positional markers in the goldfish tectumJournal of Comparative Neurology, 1989
- Functional status influences the ability of Schwann cells to support adult rat retinal ganglion cell survival and axonal regrowthExperimental Neurology, 1989
- Two membrane protein fractions from rat central myelin with inhibitory properties for neurite growth and fibroblast spreading.The Journal of cell biology, 1988
- Antibody against myelin associated inhibitor of neurite growth neutralizes nonpermissive substrate properties of CNS white matterPublished by Elsevier ,1988
- Nerve fiber growth in culture on tissue substrata from central and peripheral nervous systemsJournal of Neuroscience, 1987
- Axonal Elongation into Peripheral Nervous System "Bridges" After Central Nervous System Injury in Adult RatsScience, 1981