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PMID: 16651886 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Endogenous cell repair of chronic demyelination.

Journal of neuropathology and experimental neurology ·Vol. 65 ·No. 3 ·2006-03-00 ·Pages 245-56

Armstrong RC, Le TQ, Flint NC, Vana AC, Zhou YX

Abstract

In multiple sclerosis lesions, remyelination typically fails with repeated or chronic demyelinating episodes and results in neurologic disability. Acute demyelination models in rodents typically exhibit robust spontaneous remyelination that prevents appropriate evaluation of strategies for improving conditions of insufficient remyelination. In the current study, we used a mouse model of chronic demyelination induced by continuous ingestion of 0.2% cuprizone for 12 weeks. This chronic process depleted the oligodendrocyte progenitor population and impaired oligodendrocyte regeneration. Remyelination remained limited after removal of cuprizone from the diet. Fibroblast growth factor 2 (FGF2) expression was persistently increased in the corpus callosum of chronically demyelinated mice as compared with nonlesioned mice. We used FGF2 mice to determine whether removal of endogenous FGF2 promoted remyelination of chronically demyelinated areas. Wild-type and FGF2 mice exhibited similar demyelination during chronic cuprizone treatment. Importantly, in contrast to wild-type mice, the FGF2 mice spontaneously remyelinated completely during the recovery period after chronic demyelination. Increased remyelination in FGF2 mice correlated with enhanced oligodendroglial regeneration. FGF2 genotype did not alter the density of oligodendrocyte progenitor cells or proliferating cells after chronic demyelination. These findings indicate that attenuating FGF2 created a sufficiently permissive lesion environment for endogenous cells to effectively remyelinate viable axons even after chronic demyelination.

MeSH Terms
Animals Chelating Agents/pharmacology Corpus Callosum/cytology,physiology Cuprizone/pharmacology Disease Models, Animal Fibroblast Growth Factor 2/genetics,metabolism Humans In Situ Hybridization Mice Mice, Inbred C57BL Mice, Knockout Multiple Sclerosis/metabolism,pathology Myelin Sheath/drug effects,metabolism,pathology Oligodendroglia/cytology,metabolism Regeneration Stem Cells/cytology,physiology
Chemicals
Chelating Agents Fibroblast Growth Factor 2 Cuprizone
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Armstrong Regina C
Department of Anatomy, Physiology, and Genetics, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA. 20814, USA. rarmstrong@usuhs.mil
Le Tuan Q
Flint Nicole C
Vana Adam C
Zhou Yong-Xing
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Article Info
Journal
Journal of neuropathology and experimental neurology
Abbr.
J Neuropathol Exp Neurol
ISSN
0022-3069
Published
2006-03-00
Pages
245-56
Language
English
Region
England
NLM ID
2985192R
PMCID
PMC1635791
Subset
IM
Grants
NINDS NIH HHS · R01 NS039293 · United States
NINDS NIH HHS · NS39293 · United States
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