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PMID: 9417835 Published · ppublish English Journal Article

Activated macrophages and the blood-brain barrier: inflammation after CNS injury leads to increases in putative inhibitory molecules.

Experimental neurology ·Vol. 148 ·No. 2 ·1997-12-00 ·Pages 587-603

Fitch MT, Silver J

Abstract

The cellular responses to spinal cord or brain injury include the production of molecules that modulate wound healing. This study examined the upregulation of chondroitin sulfate proteoglycans, a family of molecules present in the wound healing matrix that may inhibit axon regeneration in the central nervous system (CNS) after trauma. We have demonstrated increases in these putative inhibitory molecules in brain and spinal cord injury models, and we observed a close correlation between the tissue distribution of their upregulation and the presence of inflammation and a compromised blood-brain barrier. We determined that the presence of degenerating and dying axons injured by direct trauma does not provide a sufficient signal to induce the increases in proteoglycans observed after injury. Activated macrophages, their products, or other serum components that cross a compromised blood-brain barrier may provide a stimulus for changes in extracellular matrix molecules after CNS injury. While gliosis is associated with increased levels of proteoglycans, not all reactive astrocytes are associated with augmented amounts of these extracellular matrix molecules, which suggests a heterogeneity among glial cells that exhibit a reactive phenotype. Chondroitin sulfate also demarcates developing cavities of secondary necrosis, implicating these types of boundary molecules in the protective response of the CNS to trauma.

MeSH Terms
Animals Astrocytes/pathology,physiology Axons/pathology Blood-Brain Barrier/physiology Brain/pathology,physiopathology Brain Injuries/pathology,physiopathology Extracellular Matrix Proteins/biosynthesis Female Glial Fibrillary Acidic Protein/analysis Inflammation Macrophage Activation Macrophages/immunology Nerve Crush Nerve Degeneration Proteoglycans/biosynthesis Rats Rats, Sprague-Dawley Spinal Cord/pathology,physiopathology Spinal Cord Injuries/pathology,physiopathology Spinal Nerve Roots/pathology Time Factors
Chemicals
Extracellular Matrix Proteins Glial Fibrillary Acidic Protein Proteoglycans
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Fitch M T
Department of Neurosciences, Case Western Reserve University School of Medicine, 10900 Euclid Avenue, Cleveland, Ohio 44106, USA.
Silver J
Article Info
Journal
Experimental neurology
Abbr.
Exp Neurol
ISSN
0014-4886
Published
1997-12-00
Pages
587-603
Language
English
Region
United States
NLM ID
0370712
Subset
IM
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