Brazilian Journal of Medical and Biological Research · 2006 · 21 citations · 15 references
Neurological DisorderImmunologyPathologyImmunotherapyImmune SystemNeuroinflammationInflammationCerebrospinal FluidInflammatory MarkerNeurologyNeuroimmunologyNeurological FunctionAutoimmune DiseaseImmune SurveillanceAutoimmunityBrain-immune InteractionCerebral Blood FlowCytokineNeuroscienceMultiple SclerosisCentral Nervous SystemStable MsMedicine
Multiple sclerosis (MS) is a chronic inflammatory demyelinating disease of the human central nervous system. Although its etiology is unknown, the accumulation and activation of mononuclear cells in the central nervous system are crucial to its pathogenesis. Chemokines have been proposed to play a major role in the recruitment and activation of leukocytes in inflammatory sites. They are divided into subfamilies on the basis of the location of conserved cysteine residues. We determined the levels of some CC and CXC chemokines in the cerebrospinal fluid (CSF) of 23 relapsing-remitting MS patients under interferon-ss-1a therapy and 16 control subjects using ELISA. MS patients were categorized as having active or stable disease. CXCL10 was significantly increased in the CSF of active MS patients (mean +/- SEM, 369.5 +/- 69.3 pg/mL) when compared with controls (178.5 +/- 29.1 pg/mL, P < 0.05). CSF levels of CCL2 were significantly lower in active MS (144.7 +/- 14.4 pg/mL) than in controls (237.1 +/- 16.4 pg/mL, P < 0.01). There was no difference in the concentration of CCL2 and CXCL10 between patients with stable MS and controls. CCL5 was not detectable in the CSF of most patients or controls. The qualitative and quantitative differences of chemokines in CSF during relapses of MS suggest that they may be useful as a marker of disease activity and of the mechanisms involved in the pathogenesis of the disease.
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Torben Lykke Sørensen, Marie Tani, Jakob Schmidt Jensen et al. · Journal of Clinical Investigation · 1999 · 1K citations · Full text
Neuropathology of multiple sclerosis—new concepts
Barbara Kornek, Hans Lassmann · Brain Research Bulletin · 2003 · 165 citations