Mechanisms involved in activity‐dependent synapse formation in mammalian central nervous system cell cultures
- 1 January 1990
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 21 (1), 138-156
- https://doi.org/10.1002/neu.480210110
Abstract
Differences in neuronal activity produced by electrical stimulation lead to competition between synapses from sensory afferents converging on a common spinal cord neuron. Studies were performed on neurons dissociated form the mouse spinal cord and grown in culture dishes with three compartments. Synaptic efficacy from stimulated afferents was increased compared with unstimulated convergents, and the number of functional connections was increased by stimulation compared with control cultures. Blocking NMDA channel activation with 100 μM APV in medium containing 1.8 mM calcium inhibited this synaptic plasticity, but plasticity was not blocked by APV in medium in which the calcium concentration was elevated to 3 mM. These experiments support the view that electrical activity differentially influences processes that cause a persistent decrease in synaptic efficacy or lead to synapse elimination and those that increase synaptic strength or lead to synapse augmentation. We interpret our results in terms of a model in which these antagonistic mechanisms are both regulated via changes in calcium levels and second messengers that are modulated by electrical activity. A significant portion of the activity‐related calcium influx relevant to synaptic plasticity passes through the NMDA channel, but other sources of calcium are involved. In particular, competitive elimination of synapses appears to occur during blockade of NMDA channels if the extracellular concentration of calcium is elevated moderately. The outcome of competition between the two calcium‐dependent but antagonistic processes may depend either on their differential sensitivity to intracellular calcium concentration or separate specificities to NMDA and non‐NMDA receptor‐linked mechanisms.Keywords
This publication has 55 references indexed in Scilit:
- Blockade of NMDA-receptors prevents ocularity changes in kitten visual cortex after reversed monocular deprivationDevelopmental Brain Research, 1989
- Synaptic Connections in Vitro: Modulation of Number and Efficacy by Electrical ActivityScience, 1989
- induces recurrent synchronized burst activity in immature hippocampal CA3 neurones in vitroDevelopmental Brain Research, 1989
- Postsynaptic Calcium Is Sufficient for Potentiation of Hippocampal Synaptic TransmissionScience, 1988
- Effects of low calcium and inhibition of calcium-activated neutral protease (CANP) on mature nerve terminal structure in the rat sternocostalis muscleDevelopmental Brain Research, 1987
- Effect of low calcium and protease inhibitors on synapse elimination during postnatal development in the rat soleus muscleDevelopmental Brain Research, 1986
- The effect of neuronal activity on the competitive elimination of neuromuscular junctions in tissue cultureDevelopmental Brain Research, 1986
- Evidence for a multiple innervation of purkinje cells by climbing fibers in the immature rat cerebellumJournal of Neurobiology, 1976
- Multiple innervation of purkinje cells by climbing fibers in the cerebellum of the weaver mutant mouseJournal of Neurobiology, 1976
- Bicuculline reversal of deprivation amblyopia in the catNature, 1976