SPONTANEOUS CA2+ TRANSIENTS IN DEVELOPING HIPPOCAMPAL PYRAMIDAL CELLS

被引:21
作者
DAILEY, ME
SMITH, SJ
机构
[1] Department of Molecular & Cellular Physiology, Stanford University Medical School, Stanford, California
来源
JOURNAL OF NEUROBIOLOGY | 1994年 / 25卷 / 03期
关键词
DEVELOPMENT; PYRAMIDAL CELLS; HIPPOCAMPAL SLICE; FLUO-3; CONFOCAL MICROSCOPY;
D O I
10.1002/neu.480250305
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
To determine the spatiotemporal pattern of hippocampal pyramidal cell activity during development, we examined cytosolic Ca2+ dynamics in tissue slices derived from early postnatal rats. After a brief(12-60 h) culture period, slices were stained with a calcium-sensitive dye, Fluo-3. Fluorescence imaging of the Fluo-3-stained slices with a scanning laser confocal microscope afforded simultaneous observation of many cells at high spatial resolution. Time-lapse imaging revealed spontaneous Ca2+ transients in the somata and dendrites of many pyramidal cells in areas CA1 and CA3. For the most part, Ca2+ activity in neighboring pyramidal cells appeared to be uncorrelated, although we occasionally observed synchronous Ca2+ transients in adjacent cells. The transients were blocked by both tetrodotoxin (l mu M) and a mixture of the glutamate receptor antagonists, APV (50 mu M) + CNQX (10 mu M). Thus, spontaneous Ca2+ transients appear to be a consequence of activity-dependent release of glutamate acting postsynaptically through ion-otropic glutamate receptors. Although gamma-aminobutyric acid (GABA) is thought to be an excitatory neurotransmitter during hippocampal development (Cherubini et al., 1991, Trends Neurosci. 14(12):515-519), the spontaneous Ca2+ transients were not blocked by the GABA, receptor antagonist picrotoxin(100 mu M). Furthermore, application of GABA (50 mu M) abolished the spontaneous Ca2+ events, possibly via GABA, receptor-mediated inhibition of postsynaptic cells. The present results join other recent observations suggesting that isolated neural tissues support spontaneous activity; although the patterns and mechanisms of the activity reported here appear to differ from those of previous studies. Differences in the patterns of spontaneous activity during development mag contribute to variations in the functional organization of different regions of CNS tissue. (C) 1994 John Wiley and Sons, Inc.
引用
收藏
页码:243 / 251
页数:9
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