Mechanisms of Glial Regeneration in an Insect Central Nervous System
Open Access
- 1 September 1987
- journal article
- review article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 132 (1) , 59-78
- https://doi.org/10.1242/jeb.132.1.59
Abstract
As in other repairing systems, glial regeneration in insect central nervous connectives, following selective chemical lesioning, involves both exogenous and endogenous elements. Our current evidence, including that obtained with monoclonal antibodies, indicates that the reactive, granule-containing cells are derived from a sub-population of circulating haemocytes which, within 24 h, invade, and are restricted to, the lesion zone. The granule-containing cells are involved in the initial repair of the perineurial region. They also contribute to the first stage in the restoration of the blood-brain barrier and are responsible for recruiting reactive endogenous glia, apparently from the vicinity of the anterior abdominal ganglion. The granule-containing cells transform into or are replaced by functional glia between 3 and 5 days after selective glial disruption, coincident with the appearance in the lesion zone of dividing reactive cells.Keywords
This publication has 27 references indexed in Scilit:
- Brain peptides and glial growth. II. Identification of cells that secrete glia-promoting factors.The Journal of cell biology, 1986
- Brain peptides and glial growth. I. Glia-promoting factors as regulators of gliogenesis in the developing and injured central nervous system.The Journal of cell biology, 1986
- Peptides released by ameboid microglia regulate astroglial proliferation.The Journal of cell biology, 1985
- Mitogenic Growth Factors and Nerve Dependence of Limb RegenerationScience, 1984
- Interacalation of ethidium ion into DNA and RNA oligonucleotidesBiopolymers, 1984
- Microglial movement to sites of nerve lesion in the leech CNSBrain Research, 1983
- A glial progenitor cell that develops in vitro into an astrocyte or an oligodendrocyte depending on culture mediumNature, 1983
- Interrelationship between Schwann cell function and extracellular matrix productionTrends in Neurosciences, 1983
- ETHIDIUM BROMIDE INDUCED DEMYELINATION IN THE SPINAL CORD OF THE CATNeuropathology and Applied Neurobiology, 1982
- ULTRASTRUCTURAL CHANGES OF OLIGODENDROGLIA AND MYELIN SHEATHS INDUCED BY ETHIDIUM BROMIDENeuropathology and Applied Neurobiology, 1979