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Impact of Minocycline on Extracellular Matrix Metalloproteinase Inducer, a Factor Implicated in Multiple Sclerosis
Jennifer N Hahn1, Deepak K Kaushik1, Manoj K Mishra1
1Hotchkiss Brain Institute and Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Calgary, Alberta T2N 4N1, Canada.
Abstract:
Extracellular matrix metalloproteinase inducer (EMMPRIN, CD147) is a transmembrane glycoprotein that is upregulated on leukocytes in active lesions in multiple sclerosis (MS) and its animal model, experimental autoimmune encephalomyelitis (EAE). Administration of anti-EMMPRIN Abs reduces the severity of EAE. Minocycline is a tetracycline antibiotic with immune-modulatory properties that decreases the severity of EAE; it was recently found to attenuate the conversion from a first demyelinating event to clinically definite MS in a phase III trial. We investigated whether and how minocycline affects the expression of EMMPRIN on T cells in culture and in mice afflicted with EAE. EMMPRIN expression in cultures of mouse splenocytes or human PBMCs was elevated upon polyclonal T cell activation, and this was reduced by minocycline correspondent with decreased P-Akt levels. An established MS medication, IFN-β, also diminished EMMPRIN levels on human cells whereas this was not readily observed for fingolimod or monomethylfumarate. In EAE-afflicted mice, minocycline treatment significantly reduced EMMPRIN levels on splenic lymphocytes at the presymptomatic (day 7) phase, and prevented the development of disease. Day 7 spleen transcripts from minocycline-treated EAE mice had a significantly lower MMP-9/TIMP-1 ratio, and significantly lower MCT-1 and CD98 levels, factors associated with EMMPRIN function. Day 16 (peak clinical severity) CNS samples from EAE mice had prominent representation of inflammatory perivascular cuffs, inflammatory molecules and EMMPRIN, and these were abrogated by minocycline. Overall, minocycline attenuated the activation-induced elevation of EMMPRIN on T cells in culture and in EAE mice, correspondent with reduced immune function and EAE CNS pathology.
Insights
Minocycline reduces extracellular matrix metalloproteinase inducer (EMMPRIN) on T cells, decreasing immune response and multiple sclerosis (MS) severity in EAE models. This immune modulation offers therapeutic potential for MS.
Area of Science:
- Neuroimmunology
- Molecular Biology
- Pharmacology
Background:
- Extracellular matrix metalloproteinase inducer (EMMPRIN, CD147) is upregulated on leukocytes in active multiple sclerosis (MS) lesions.
- Minocycline, an antibiotic with immune-modulatory effects, reduces experimental autoimmune encephalomyelitis (EAE) severity and delays MS conversion.
Purpose of the Study:
- To investigate the effect of minocycline on EMMPRIN expression in T cells.
- To elucidate the mechanisms underlying minocycline's therapeutic effects in EAE and potentially MS.
Main Methods:
- Assessed EMMPRIN expression on T cells in vitro (mouse splenocytes, human PBMCs) and in vivo (EAE mice) following minocycline treatment.
- Analyzed downstream signaling pathways (P-Akt) and related gene/protein expression (MMP-9, TIMP-1, MCT-1, CD98).
- Examined central nervous system (CNS) pathology in EAE mice.
Main Results:
- Minocycline treatment reduced EMMPRIN expression on activated T cells in vitro and in EAE mice, correlating with decreased P-Akt levels.
- In EAE mice, minocycline treatment reduced EMMPRIN on splenic lymphocytes, lowered MMP-9/TIMP-1 ratio, MCT-1, and CD98 levels, and abrogated CNS inflammation and pathology.
- IFN-β also reduced EMMPRIN in human cells, unlike fingolimod or monomethylfumarate.
Conclusions:
- Minocycline attenuates the activation-induced elevation of EMMPRIN on T cells.
- This reduction in EMMPRIN is associated with decreased immune function and amelioration of EAE CNS pathology.
- Minocycline's effect on EMMPRIN presents a potential therapeutic mechanism for MS.
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