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PMID: 10672225 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Glutamate excitotoxicity and neuronal energy metabolism.

Annals of the New York Academy of Sciences ·Vol. 893 ·1999-00-00 ·Pages 1-12

Nicholls DG, Budd SL, Castilho RF, Ward MW

Abstract

The bioenergetic properties of the in situ mitochondria play a central role in controlling the susceptibility of neurons to acute or chronic neurodegenerative stress. The mitochondrial membrane potential, delta psi m is the parameter that controls three interrelated mitochondrial functions of great relevance to neuronal survival: namely, ATP synthesis, Ca2+ accumulation, and superoxide generation. The in vitro model we study is the rat cerebellar granule cell in primary culture and its susceptibility to NMDA receptor-mediated necrosis, which is preceded by a delayed failure of cytoplasmic Ca2+ homeostasis ("delayed Ca2+ deregulation," DCD). DCD is not caused by a failure of mitochondrial ATP synthesis since it also occurs in cells maintained purely by glycolysis. The in situ mitochondria maintain a delta psi m sufficient for ATP synthesis throughout the exposure of the cells to glutamate until DCD occurs. Even at that stage it appears that mitochondrial depolarization may be an effect of DCD rather than a primary cause. This somewhat unorthodox view resolves a number of apparent paradoxes, such as observations of enhanced superoxide generation by in situ mitochondria during excitotoxic exposure, since isolated mitochondria generate superoxide only under conditions of high delta psi m. Mitochondrial depolarization by selective inhibitors that do not deplete cellular ATP is acutely neuroprotective.

MeSH Terms
Animals Calcium/metabolism Cell Survival/drug effects Cells, Cultured Cerebellum/cytology,physiology Energy Metabolism/drug effects,physiology Glutamic Acid/pharmacology Intracellular Membranes/drug effects,physiology Membrane Potentials/drug effects,physiology Mitochondria/drug effects,physiology Neurons/cytology,drug effects,physiology Neurotoxins/pharmacology Rats Receptors, N-Methyl-D-Aspartate/physiology
Chemicals
Neurotoxins Receptors, N-Methyl-D-Aspartate Glutamic Acid Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Nicholls D G
Department of Pharmacology and Neuroscience, University of Dundee, Scotland, UK.
Budd S L
Castilho R F
Ward M W
Article Info
Journal
Annals of the New York Academy of Sciences
Abbr.
Ann N Y Acad Sci
ISSN
0077-8923
Published
1999-00-00
Pages
1-12
Language
English
Region
United States
NLM ID
7506858
Subset
IM
Grants
Wellcome Trust · United Kingdom
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