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PMID: 8263539 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Hydroxyl radicals generated in vivo kill neurons in the rat spinal cord: electrophysiological, histological, and neurochemical results.

Journal of neurochemistry ·Vol. 62 ·No. 1 ·1994-01-00 ·Pages 37-44

Liu D, Yang R, Yan X, McAdoo DJ

Abstract

We have used microdialysis to establish an experimental model to characterize mechanisms whereby released substances cause secondary damage in spinal cord injury. We use this model here to characterize damaging effects of the hydroxyl radical (OH.) in vivo in the spinal cord. OH. was generated in vivo by pumping H2O2 and FeCl2/EDTA through parallel microdialysis fibers inserted into the spinal cord. These agents mixed in the tissue to produce OH. by Fenton's reaction. Two types of control experiments were also conducted, one administering only 5 mM H2O2 and the other only 0.5 mM FeCl2/0.82 mM EDTA. During administration of these chemicals, electrical conduction was recorded as one test for deterioration. OH. blocked conduction completely in 2.5-5 h and Fe2+/EDTA partly blocked conduction, but H2O2 alone did not cause detectable blockage. Histological examination supported the hypothesis that neurons were killed by OH., as Fe2+/EDTA and H2O2 alone did not destroy significant numbers of neurons. OH., H2O2, and Fe2+ all caused gradual increases in extracellular amino acid levels. These results are consistent with Fe(2+)-catalyzed free radical generation playing a role in tissue damage upon spinal cord injury.

MeSH Terms
Animals Electric Stimulation Evoked Potentials/drug effects Hydrogen Peroxide/pharmacology Hydroxyl Radical/metabolism Iron/pharmacology Kinetics Male Microdialysis Neurons/cytology,drug effects,physiology Rats Rats, Sprague-Dawley Sciatic Nerve/physiology Spinal Cord/cytology,physiology Time Factors
Chemicals
Hydroxyl Radical Hydrogen Peroxide Iron
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Liu D
Marine Biomedical Institute, University of Texas Medical Branch, Galveston 77555.
Yang R
Yan X
McAdoo D J
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
1994-01-00
Pages
37-44
Language
English
Region
England
NLM ID
2985190R
Subset
IM
Grants
NINDS NIH HHS · NS 11255 · United States
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