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PMID: 11784768 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Hippocampal astrocytes in situ exhibit calcium oscillations that occur independent of neuronal activity.

Journal of neurophysiology ·Vol. 87 ·No. 1 ·2002-01-00 ·Pages 528-37

Nett WJ, Oloff SH, McCarthy KD

Abstract

Results presented in this study indicate that a large subpopulation (approximately 65%) of hippocampal astrocytes in situ exhibit calcium oscillations in the absence of neuronal activity. Further, the spontaneous oscillations observed within individual hippocampal astrocytes generally developed asynchronously throughout the astrocyte's fine processes and occasionally spread through a portion of that astrocyte as a calcium wave but do not appear to spread among astrocytes as an intercellular calcium wave. Bath application of cyclopiazonic acid and injection of individual astrocytes with heparin blocked astrocytic calcium oscillations. Application of tetrodotoxin or incubation of slices with bafilomycin A1 had no effect on astrocytic calcium oscillations but did block evoked and spontaneous postsynaptic currents measured in CA1 pyramidal neurons. Application of a cocktail of antagonists for metabotropic glutamate receptors and purinergic receptors had no effect on the astrocytic calcium oscillations but blocked the ability of purinergic and metabotropic glutamatergic agonists to increase astrocytic calcium levels. These results indicate that the spontaneous calcium oscillations observed in hippocampal astrocytes in situ are mediated by IP3 receptor activation, are not dependent on neuronal activity, and do not depend on activation of metabotropic glutamate receptors or purinergic receptors. To our knowledge, this is the first demonstration that astrocytes in situ exhibit intrinsic signaling. This finding supports the hypothesis that astrocytes, independent of neuronal input, may act as pacemakers to modulate neuronal activity in situ.

MeSH Terms
Animals Anti-Bacterial Agents/pharmacology Astrocytes/drug effects,metabolism Biological Clocks/drug effects,physiology Calcium/metabolism Calcium Signaling/physiology Calcium-Binding Proteins Cell Surface Extensions/metabolism DNA-Binding Proteins/metabolism Enzyme Inhibitors/pharmacology Excitatory Amino Acid Agonists/pharmacology Excitatory Amino Acid Antagonists/pharmacology Fluorescent Dyes Heparin/pharmacology Hippocampus/cytology,drug effects,metabolism In Vitro Techniques Indoles/pharmacology Intracellular Fluid/metabolism Macrolides Mice Microfilament Proteins Neurons/drug effects,metabolism Patch-Clamp Techniques Purinergic Agonists Purinergic Antagonists Pyramidal Cells/drug effects,metabolism Receptors, Metabotropic Glutamate/agonists,antagonists & inhibitors Tetrodotoxin/pharmacology
Chemicals
AIF1 protein, human Anti-Bacterial Agents Calcium-Binding Proteins DNA-Binding Proteins Enzyme Inhibitors Excitatory Amino Acid Agonists Excitatory Amino Acid Antagonists Fluorescent Dyes Indoles Macrolides Microfilament Proteins Purinergic Agonists Purinergic Antagonists Receptors, Metabotropic Glutamate Tetrodotoxin bafilomycin A1 Heparin Calcium cyclopiazonic acid
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Nett Wolfgang J
Department of Pharmacology, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599-7365, USA.
Oloff Scott H
McCarthy Ken D
Article Info
Journal
Journal of neurophysiology
Abbr.
J Neurophysiol
ISSN
0022-3077
Published
2002-01-00
Pages
528-37
Language
English
Region
United States
NLM ID
0375404
Subset
IM
Grants
NINDS NIH HHS · NS-20214 · United States
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