Effects of brain-derived neurotrophic factor on optic axon branching and remodelling in vivo
- 1 November 1995
- journal article
- Published by Springer Nature in Nature
- Vol. 378 (6553), 192-196
- https://doi.org/10.1038/378192a0
Abstract
Neurotrophins are thought to be important for the survival and differentiation of vertebrate neurons. Roles have been suggested for target-derived neurotrophins, based both on their expression in target tissues at the time of neuron innervation, and on their effects on axonal sprouting. However, direct in vivo evidence of their involvement in axon arborization has remained elusive. We have used in vivo microscopy to follow individual optic axons over time, and have examined the role of the neurotrophin brain-derived neurotrophic factor (BDNF) in their development. Here we show that injection of BDNF into the optic tectum of live Xenopus laevis tadpoles increased the branching and complexity of optic axon terminal arbors. In contrast, injection of specific neutralizing antibodies to BDNF reduced axon arborization and complexity. The onset of these effects was rapid (within 2 hours) and persisted throughout the 24-hour observation period. Other neurotrophins had little or no significant effects. These results demonstrate the involvement of neurotrophins in the dynamic elaboration of axon terminals, and suggest a direct role for target-derived BDNF during synaptic patterning in the developing central nervous system.Keywords
This publication has 30 references indexed in Scilit:
- Rapid remodeling of retinal arbors in the tectum with and without blockade of synaptic transmissionNeuron, 1994
- Requirement for BDNF in Activity-Dependent Survival of Cortical NeuronsScience, 1994
- Potentiation of developing neuromuscular synapses by the neurotrophins NT-3 and BDNFNature, 1993
- Depolarizing Influences Increase Low-Affinity NGF Receptor Gene Expression in Cultured Purkinje NeuronsExperimental Neurology, 1993
- BDNF mRNA expression in the developing rat brain following kainic acid-induced seizure activityNeuron, 1992
- trkC, a new member of the trk family of tyrosine protein kinases, is a receptor for neurotrophin-3Cell, 1991
- The trk Proto-Oncogene Product: a Signal Transducing Receptor for Nerve Growth FactorScience, 1991
- Dynamic changes in optic fiber terminal arbors lead to retinotopic map formation: An in vivo confocal microscopic studyNeuron, 1990
- NMDA receptor antagonists disrupt the retinotectal topographic mapNeuron, 1989
- Developmental changes of nerve growth factor levels in sympathetic ganglia and their target organsDevelopmental Biology, 1988