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Targeting leukocyte MMPs and transmigration

Brundula V, Rewcastle NB, Metz LM +2 more2002BrainJournal Article
10.1093/brain/awf133PubMedFree full text
Immune/InnateNeurological

Abstract

Multiple sclerosis is characterized by the infiltration of leukocytes into the CNS. As matrix metalloproteinases (MMPs) facilitate the passage of leukocytes across matrix barriers, we tested the hypothesis that targeting MMPs could attenuate neuro-inflammation. We report that minocycline, a widely used generic drug with a good safety record, inhibited MMP activity, reduced production of MMP-9 and decreased the transmigration of T lymphocytes across a fibronectin matrix barrier. In addition, minocycline was efficacious against both mild and severe experimental autoimmune encephalomyelitis (EAE) in mice, an animal model of multiple sclerosis. When severe EAE was produced, minocycline pre-treatment delayed the course of the disease: when maximal disease activity occurred in vehicle-treated EAE mice, minocycline animals were relatively normal and had minimal signs of inflammation and demyelination in the CNS. When tested in mice afflicted with mild EAE, minocycline attenuated the clinical severity of disease throughout the course of treatment. These results indicate that minocycline may constitute a safe and inexpensive therapy for multiple sclerosis.

Key Biomarkers

Leukocyte transmigrationMatrix Metalloproteinases (MMP-9)T lymphocytes

Symptom Clusters

CNS infiltration of leukocytesDemyelinationNeuroinflammation

Cited By (2)

  • Blood-Brain Barrier Dysfunction in CNS Disorders and Putative Therapeutic Targets: An OverviewPharmaceutics · 2021
  • Analyses of all matrix metalloproteinase members in leukocytes emphasize monocytes as major inflammatory mediators in multiple sclerosisBrain · 2003

References (2)

  • Matrix metalloproteinase-9 (gelatinase B) is selectively elevated in CSF during relapses and stable phases of multiple sclerosisBrain · 1998
  • Expression of matrix metalloproteinase-9 and its inhibitors in mononuclear blood cells of patients with multiple sclerosisJournal of Neuroimmunology · 1999

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