Relationship of Intracellular Calcium to Dependence on Nerve Growth Factor in Dorsal Root Ganglion Neurons in Cell Culture
- 1 January 1992
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 58 (1) , 263-269
- https://doi.org/10.1111/j.1471-4159.1992.tb09305.x
Abstract
During development, neural crest‐derived sensory neurons require nerve growth factor (NGF) for survival, but lose this dependency postnatally. Similarly, dissociated embryonic sensory neurons lose their NGF dependence during the first 3 weeks in cell culture. It has been hypothesized that, in sympathetic neurons, intracellular levels of calcium are related to trophic factor dependence. In vitro during the period in which embryonic‐day‐15 sensory neurons become independent of NGF, intracellular calcium concentrations progressively increased in parallel to the decline in NGF dependence. This elevation of intracellular calcium was directly related to the absolute age of the neurons, not to the length of time in culture. Without NGF, immature sensory, i.e., dependent, neurons survived in the presence of high extracellular potassium, a condition that produces elevated intracellular calcium. In another paradigm, measurements of intracellular calcium were determined in NGF‐dependent neurons “committed to die'’ after NGF withdrawal. These measurements were determined prior to the time that extensive morphological changes, consistent with cell death, were noted by phase‐contrast microscopy. No elevation in intracellular calcium was found in these dying neurons, but rather, a small decrease was observed prior to the disintegration of the neurons. These findings support the hypothesis that trophic factor dependence of neurons may be inversely related to levels of intracellular calcium.Keywords
This publication has 24 references indexed in Scilit:
- The role of dihydropyridine-sensitive voltage-gated calcium channels in potassium-mediated neuronal survivalBrain Research, 1989
- Imaging of cytosolic Ca2+ transients arising from Ca2+ stores and Ca2+ channels in sympathetic neuronsNeuron, 1988
- High K+-mediated survival of spinal sensory neurons depends on developmental stageExperimental Cell Research, 1987
- Nerve growth factor protects adult sensory neurons from cell death and atrophy caused by nerve injuryJournal of Neurocytology, 1987
- Glutamate neurotoxicity in cortical cell culture is calcium dependentNeuroscience Letters, 1985
- Role of nerve growth factor in the adult dorsal root ganglia neuron and its response to injuryJournal of Comparative Neurology, 1984
- Calcium Dependence of Toxic Cell Death: A Final Common PathwayScience, 1979
- Quantitative in vitro studies on the nerve growth factor (NGF) requirement of neuronsDevelopmental Biology, 1977
- The effect of elevated potassium on the time course of neuron survival in cultures of dissociated dorsal root gangliaJournal of Cellular Physiology, 1977
- Potassium concentration and number of neurons in cultures of dissociated gangliaExperimental Neurology, 1970