PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “SCLEROSIS, MULTIPLE”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 415 records · Page 23Linked to original sources

Chemokines in the cerebrospinal fluid of patients with active and stable relapsing-remitting multiple sclerosis.

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.

Adjuvants, Immunologic↗

Genes, environment, and susceptibility to multiple sclerosis.

Multiple sclerosis (MS) is a chronic disease of the central nervous system affecting young adults and thus representing a major burden also for their families and communities. The etiology of MS is obscure and its pathogenesis is yet incompletely depicted. Increased evidences indicate a strong genetic contribution to MS susceptibility, although others support the view that it is also influenced by environmental factors, possibly related to still unidentified pathogens. MS appears to be more heterogeneous than previously believed at the immunological level, and new pathological studies indicate a series of subset of conditions under the common denominator MS. The use of genetically homogeneous and geographically isolated populations at high MS risk, such as that of Sardinia, insular Italy, becomes in principle a vital requirement to reduce biological variables and the intrinsic complexity of the disease. This review will focus on recent findings on the peculiarity of Sardinian MS concerning epidemiological, genetic, and environmental aspects. Epidemiological studies reveal a clear heterogeneous distribution of MS cases in the Northern province of Sassari which may not be uniquely assigned to genetic variations. Furthermore, a different immunogenetic profile, including the association with other immunomediated diseases, and a progressive change in clinical phenotype, including age at onset, are present in this island which gives us unexpected variations at the level of patients' cohort and territorial distribution, especially when the northern province is compared to the southern one. This renders MS etiopathogenesis more complex than formerly thought even in this selected and genetically stable population.

Disease Susceptibility↗

Immunology of multiple sclerosis.

Multiple sclerosis (MS), a putative autoimmune disease of unknown etiology, is characterized by CNS perivascular inflammation, foci of demyelination, and elevated intrathecal production of oligoclonal IgG's. T and B cells, macrophages, and microglia are all implicated in contributing to the initiation and perpetuation of the disease. In this brief review we discuss the possible role of T cells, B cells, macrophages, and microglia in contributing to the initiation and perpetuation of inflammation and demyelination in MS. Data from the rodent model of MS, experimental allergic encephalomyelitis (EAE) supporting a immunological basis for the pathology of MS is noted. This paper discusses recent data suggesting an interaction of the above-mentioned cells, as well as serum and CSF proteins including complement and anti-myelin/oligodendrocyte antibodies, in the pathogenesis of MS and EAE. Additionally, this review describes each cell type including the clinical and experimental evidence for their contribution to the immunologically mediated pathology of MS. Following the description of the role of individual cells, there is consideration of: the possible interaction of cells with the blood brain barrier (BBB) under normal and pathologic inflammatory conditions; the traffic of cells into the CNS in inflammation; and the role of antigen presentation within the CNS in the initiation, and perpetuation, of the CNS immune response. Finally, the review suggests a role for T cells in the initiation, amplification, and possibly the termination of CNS inflammatory events with particular attention paid to the pattern of T cell activation and T cell cytokine production.

Animals↗

Differential isoform profiles of alpha 2-macroglobulin from plasma of patients with chronic-progressive or relapsing-remitting multiple sclerosis.

Multiple sclerosis (MS) is a human neurological disease for which no clinically useful marker has been identified in blood. This study examined alpha 2-macroglobulin (alpha 2M) from the plasma of six patients with chronic-progressive MS and six with relapsing-remitting disease. The alpha 2M trypsin-binding activity in the plasma from both groups of patients did not differ from normal controls. However, after column isoelectric focusing, consistently less alpha 2M activity was recovered from the MS samples: those from the chronic-progressive and relapsing-remitting disease groups were an average of 43% and 68%, respectively, of controls. The number and isoelectric point (pI) values of the isoforms of the alpha 2M from patients with chronic-progressive disease were similar to controls. The average pI of the major form for both groups was 6.6. By contrast, the average pI of the major form from the patients with relapsing-remitting MS was significantly elevated to 7.1, and this group displayed a significantly higher percentage of total recovered activity above pH 7.0. In eleven of the twelve cases examined, the pI of the major form of alpha 2M correctly correlated with the clinical status of the patient. The original clinical diagnosis of the patients was reassessed by a 9-year retrospective interview which verified that 9 of the 10 patients in the follow-up group retained their original clinical diagnosis. These studies demonstrate differential isoform profiles of native alpha 2M from MS patients with progressive versus remitting disease which may be useful in subclassifying MS patients.

Adult↗

Elevated urinary excretion of aluminium and iron in multiple sclerosis.

Multiple sclerosis (MS) is a chronic, immune-mediated, demyelinating disease of the central nervous system of as yet unknown aetiology. A consensus of opinion has suggested that the disorder is the result of an interplay between environmental factors and susceptibility genes. We have used a battery of analytical techniques to determine if the urinary excretion of i) markers of oxidative damage; ii) iron and iii) the environmental toxin aluminium and its antagonist, silicon, are altered in relapsing-remitting (RRMS) and secondary progressive MS (SPMS). Urinary concentrations of oxidative biomarkers, MDA and TBARS, were not found to be useful indicators of inflammatory disease in MS. However, urinary concentrations of another potential marker for inflammation and oxidative stress, iron, were significantly increased in SPMS (P<0.01) and insignificantly increased in RRMS (P>0.05). Urinary concentrations of aluminium were also significantly increased in RRMS (P<0.001) and SPMS (P <0.05) such that the levels of aluminium excretion in the former were similar to those observed in individuals undergoing metal chelation therapy. The excretion of silicon was lower in MS and significantly so in SPMS (P<0.05). Increased excretion of iron in urine supported a role for iron dysmetabolism in MS. Levels of urinary aluminium excretion similar to those seen in aluminium intoxication suggested that aluminium may be a hitherto unrecognized environmental factor associated with the aetiology of MS. If aluminium is involved in MS then an increased dietary intake of its natural antagonist, silicon, might be a therapeutic option.

Adult↗

Increased T-lymphocyte interleukin-6 binding in patients with multiple sclerosis.

Multiple sclerosis (MS) represents a T-cell-mediated autoimmune demyelinating disease of the central nervous system associated with altered immunoregulation. Interleukin (IL)-6 is a cytokine that has several effects on the neuroimmune system. Specific IL-6 receptors have been found in human lymphocytes and neuroglial cells. The aim of the present study was to assay IL-6 binding on peripheral blood T lymphocytes in MS patients. We found that T cells from MS patients had significantly more IL-6 receptors [Bmax: 279 +/- 7 vs. 246 +/- 8 (mean +/- SEM) receptors/cell, in patients and controls, respectively], whereas Kd values were similar to those of healthy subjects [26.8 +/- 0.7 vs. 25.4 +/- 0.6 (mean +/- SEM) pM, in patients and controls, respectively]. Significant (P < 0.05) differences in IL-6 binding values were observed between stable patients and those relapsing (272 +/- 9 vs. 300 +/- 12 (mean +/- SEM) receptors/cell, respectively). We found significantly (P < 0. 001) higher amounts of IL-6 receptors on CD4+ T cells from MS patients than on CD4+ lymphocytes from controls (434 +/- 11 vs. 363 +/- 9 (mean +/- SEM) receptors/cell, respectively); CD8+ T cells showed very few IL-6 receptors in both patients and controls. These data are discussed in terms of MS immune pathogenesis and pathophysiology, because T-cell activation seems to be linked to increased IL-6 binding. The upregulated IL-6 system might be involved in antibody-mediated demyelinating pathways, because IL-6 is well known to enhance humoral immune response.

Adolescent↗

FK506 and a nonimmunosuppressant derivative reduce axonal and myelin damage in experimental autoimmune encephalomyelitis: neuroimmunophilin ligand-mediated neuroprotection in a model of multiple sclerosis.

Multiple sclerosis (MS) is an inflammatory disease of the central nervous system (CNS) in which demyelination and axonal loss result in permanent neurologic disability. We examined the neuroprotective property of the immunosuppressant FK506 (tacrolimus), FK1706 (a nonimmunosuppressant FK506 derivative) and cyclosporin A (CsA) in a chronic relapsing experimental autoimmune encephalomyelitis (EAE) model of MS. Female SJL/J mice were immunized by subcutaneous (s.c.) injection with proteolipid protein 139-151 peptide in complete Freund's adjuvant. At the onset of paralysis, 12-14 days after immunization, mice received daily s.c. injections of FK506 (0.2, 1, and 5 mg/kg), FK1706 (5 mg/kg), CsA (2, 10, and 50 mg/kg), saline or vehicle (30% dimethylsulfoxide) for 30 days. FK506 (at a dose of 5 mg/kg) reduced the severity of the initial disease and suppressed relapses. FK1706 did not significantly alter the clinical course and CsA (at a dose of 50 mg/kg) lessened the severity of the initial episode of EAE but did not alter relapses. In the thoracic spinal cord, FK506 (5 mg/kg), FK1706 (5 mg/kg), and CsA (50 mg/kg) significantly (P < 0.001) reduced the extent of damage in the dorsal, lateral, and ventral white matter by a mean of up to 95, 68, and 30%, respectively. A nonimmunosuppressant dose of FK506 (0.2 mg/kg) also significantly (P < 0.001) reduced the extent of damage in the spinal cord by a mean of up to 45%. Other dosages of these compounds were ineffective. FK506 markedly protects against demyelination and axonal loss in this MS model through immunosuppression and neuroprotection.

Animals↗

Innate production of interleukin-10 and tumor necrosis factor affects the risk of multiple sclerosis.

Multiple sclerosis (MS) typically presents with a relapsing-remitting onset. This can be distinguished from primary progressive MS. Typical MS is characterized by a profound inflammatory reaction in which anti-inflammatory cytokine interleukin-10 (IL-10) and pro-inflammatory cytokine tumor necrosis factor (TNF) may play a pivotal role. We tested the hypothesis that patients with MS have a distinct innate cytokine production that contributes to the susceptibility for and outcome of MS. The innate cytokine production of patients was estimated as the average production of cytokines in lipopolysaccharide -stimulated whole-blood cultures of 2 to 5 first-degree healthy family members. A total of 126 family members of 50 patients with typical MS, 61 family members of 25 patients with primary progressive MS, and 129 control subjects of 54 families were enrolled in this study. We found that members of families with low IL-10 and high TNF production had a fourfold increased risk of developing typical MS compared with members of families with high IL-10 and low TNF production. Patients with MS were eightfold more likely to develop typical MS than primary progressive MS when they belonged to families with low IL-10 and high TNF production. The presence of human leukocyte antigen-DR2 was associated with MS but not with TNF production. This study shows that typical MS is associated with an innate pro-inflammatory cytokine profile in contrast to primary progressive MS.

Adult↗

Aberrant T cell responses to myelin antigens during clinical exacerbation in patients with multiple sclerosis.

Multiple sclerosis (MS) is a demyelinating disease of presumed T cell autoimmunity against self myelin. We hypothesized that if myelin-reactive T cells are associated with the disease processes, they may undergo activation and expansion during acute exacerbation. In this study, we examined the precursor frequency, epitope recognition and cytokine profile of myelin-reactive T cells in 14 relapsing/remitting MS patients during exacerbation and remission. The study revealed that T cells recognizing the immunodominant peptides of candidate myelin antigens, including myelin basic protein (MBP), proteolipid protein and myelin oligodendrocyte glycoprotein, occurred at increased precursor frequency during acute exacerbation. The T cell responses to MBP focused on the immunodominant regions (residues 83-99 and 151-170) during exacerbation and shifted toward other epitopes of MBP at the time of remission. Furthermore, there was a marked increase in the production of T(h)1 cytokines among T cell lines obtained during exacerbation compared to those obtained during remission. The study demonstrated that myelin-reactive T cells underwent selective activation and expansion during acute MS exacerbation. In contrast, myelin-reactive T cells found during remission in the same patients generally resembled those identified in healthy controls with some discrepancies. The findings suggest potential association of aberrant myelin-reactive T cell responses with acute exacerbation in MS, which may reflect transient activation of myelin-reactive T cell populations of pathogenic potential.

Adult↗

Differential expression of CD11c by peripheral blood NK cells reflects temporal activity of multiple sclerosis.

Multiple sclerosis (MS) is an autoimmune disease, showing a great degree of variance in temporal disease activity. We have recently demonstrated that peripheral blood NK cells biased for secreting IL-5 (NK2 bias) are associated with the remission state of MS. In this study, we report that MS patients in remission differentially express CD11c on NK cell surface (operationally defined as CD11chigh or CD11clow). When we compared CD11chigh or CD11clow patients, the expression of IL-5 and GATA-3 in NK cells supposed to endow a disease-protective NK2 phenotype was observed in CD11clow but not in CD11chigh patients. In contrast, the CD11chigh group showed a higher expression of HLA-DR on NK cells. In vitro studies demonstrated that NK cell stimulatory cytokines such as IL-15 would up-regulate CD11c expression on NK cells. Given previous evidence showing an association between an increased level of proinflammatory cytokines and temporal disease activity in MS, we postulate that inflammatory signals may play a role in inducing the CD11chigh NK cell phenotype. Follow-up of a new cohort of patients showed that 6 of 10 CD11chigh MS patients developed a clinical relapse within 120 days after evaluation, whereas only 2 of 13 CD11clow developed exacerbated disease (p = 0.003). As such, a higher expression of CD11c on NK cells may reflect the temporal activity of MS as well as a loss of regulatory NK2 phenotype, which may allow us to use it as a potential biomarker to monitor the immunological status of MS patients.

Adult↗

High b-value q-space analyzed diffusion-weighted MRI: application to multiple sclerosis.

Multiple sclerosis (MS) is an inflammatory disease of the central nervous system (CNS) which affects nearly one million people worldwide, leading to a progressive decline of motor and sensory functions, and permanent disability. High b-value diffusion-weighted MR images (b of up to 14000 s/mm(2)) were acquired from the brains of controls and MS patients. These diffusion MR images, in which signal decay is not monoexponential, were analyzed using the q-space approach that emphasizes the diffusion characteristics of the slow-diffusing component. From this analysis, displacement and probability maps were constructed. The computed q-space analyzed MR images that were compared with conventional T(1), T(2) (fluid attenuated inversion recovery (FLAIR)), and diffusion tensor imaging (DTI) images were found to be sensitive to the pathophysiological state of white matter. The indices used to construct this q-space analyzed MR maps, provided a pronounced differentiation between normal tissue and tissues classified as MS plaques by the FLAIR images. More importantly, a pronounced differentiation was also observed between tissues classified by the FLAIR MR images as normal-appearing white matter (NAWM) in the MS brains, which are known to be abnormal, and the respective control tissues. The potential diagnostic capacity of high b-value diffusion q-space analyzed MR images is discussed, and experimental data that explains the consequences of using the q-space approach once the short pulse gradient approximation is violated are presented.

Animals↗

Brain MRI in late-onset multiple sclerosis.

Multiple sclerosis (MS) with clinical onset after 50 years of age is unusual (between 1 and 6%) and is frequently misdiagnosed. Furthermore, brain magnetic resonance imaging (MRI) abnormalities are frequently observed in subjects over 50 years of age. The aim of this study was to describe brain MRI in late-onset MS to evaluate the sensitivity and specificity of radiological MS criteria in patients aged over 50 years. We evaluated the brain MRI of 20 patients with onset of MS after 50 years of age. We compared these MRI with 26 controls matched for age, sex and vascular risk factors. MRI were blindly analysed by two neuroradiologists according to Paty et al.'s [Neurology38 (1988) 180] criteria, Fazekas et al.'s [Neurology38 (1988) 1822] criteria and Barkhof et al.'s [Brain120 (1997) 2059] criteria. The mean age at MRI scanning was 58 years. Sensitivity was 90% for Paty et al.'s criteria, 80% for Fazekas et al.'s criteria and 85% for Barkhof et al.'s criteria. Specificity was 54% for Paty et al.'s criteria, 69% for Fazekas et al.'s criteria and 65% for Barkhof et al.'s criteria. Barkhof et al.'s criteria are less specific in older patients than in young patients. We suggest that spinal cord MRI and cerebrospinal fluid analysis should be systematically performed in suspected late-onset MS in order to increase the specificity of the diagnosis.

Aged↗

Symptomatic therapy and neurorehabilitation in multiple sclerosis.

Multiple sclerosis (MS) is associated with a variety of symptoms and functional deficits that result in a range of progressive impairments and handicap. Symptoms that contribute to loss of independence and restrictions in social activities lead to continuing decline in quality of life. Our aim is to give an updated overview on the management of symptoms and rehabilitation measures in MS. Appropriate use of these treatment options might help to reduce long-term consequences of MS in daily life. First, we review treatment of the main symptoms of MS: fatigue, bladder and bowel disturbances, sexual dysfunction, cognitive and affective disorders, and spasticity. Even though these symptomatic therapies have benefits, their use is limited by possible side-effects. Moreover, many common disabling symptoms, such as weakness, are not amenable to drug treatment. However, neurorehabilitation has been shown to ease the burden of these symptoms by improving self-performance and independence. Second, we discuss comprehensive multidisciplinary rehabilitation and specific treatment options. Even though rehabilitation has no direct influence on disease progression, studies to date have shown that this type of intervention improves personal activities and ability to participate in social activities, thereby improving quality of life. Treatment should be adapted depending on: the individual patient's needs, demands of their surrounding environment, type and degree of disability, and treatment goals. Improvement commonly persists for several months beyond the treatment period, mostly as a result of reconditioning and adaptation and appropriate use of medical and social support at home. These findings suggest that quality of life is determined by disability and handicap more than by functional deficits and disease progression.

Activities of Daily Living↗

[Uric acid and multiple sclerosis].

Multiple Sclerosis (MS) is a chronic inflammatory disease of the central nervous system. Its etiology is not known, but it is well established that auto-reactive T-cells and monocytes play an important pathogenetic role. Experimental allergic encephalomyelitis (EAE) of mice serves as disease model for MS. In both EAE and MS inflammatory cells produce nitric oxide and its oxidizing congeners such as peroxynitrite. Peroxynitrite and other reactive nitrogen oxide species exert a toxic effect on neurons, axons and glia cells and enhance apoptosis. In addition, they increase the blood-CNS-barrier permeability and can therefore promote invasion of inflammatory cells into the CNS. On the other hand, uric acid, a peroxynitrite scavenger inhibits blood-CNS-barrier permeability changes, CNS inflammation and tissue damage in EAE. Epidemiological studies have shown that MS and gout are almost mutually exclusive diseases. Uric acid levels in MS patients are lower than in controls and in patients with active disease lower than in MS patients in remission. Inosine, a uric acid precursor, can be used to raise uric acid levels in serum and may provide some benefit in MS patients. A small study of ten patients with progressive MS has demonstrated some improved function in three of them and no sign of progression or relapse in the other. However, this study does not justify a recommendation for use of inosine in MS patients yet. At present, uric acid can solely be regarded as a marker of disease activity in MS. In addition, the current knowledge of uric acid and MS supports hypotheses which predict a positive effect of radical scavengers in MS.

Biomarkers↗

[The effect of cladribine treatment on beta-2 microglobin in the cerebrospinal fluid and serum of patients with multiple sclerosis].

Multiple sclerosis (MS) is the most frequent demyelinating disease of the central nervous system (CNS). Lymphocytes seem to play a crucial role in the pathogenesis of the disorder. They are rich in, among others, beta-2Microglobulin (beta 2M)--a low molecular weight protein located extracellularly and associated with class 1 antigens of the major histocompatibility complex. beta-2M is considered as a marker for disease activity in immune disorders. Its precise role in pathology remains still unknown, but there is evidence that it may be involved in lymphocyte activation. Cladribine (2-chloro-2-deoxyadenosine, 2-CDA) is a potent lymphocytotoxic agent under investigation in the treatment in MS patients, earlier used in hairy-cell-leukemia therapy. Previous studies in MS populations showed beta 2-microglobulin to be moderately increased. Suspecting that beta 2M levels might indicate inflammatory events in CNS we determined CSF-beta 2M and serum beta 2M concentration in patients with relapsing-remitting MS (n = 15) before and after cladribine treatment as well as in a control group diagnosed as tension type headache (n = 10). There was a significant decrease in the CSF and sera beta 2M level in MS patients after cladribine treatment, associated with a slight but significant clinical improvement measured by Kurtzke's Expanded Disability Status Scale. We conclude that beta 2M is a sensitive marker of the CDA influence on the immune system in MS patients; however, increase in CSF and sera beta 2M is not specific as there was no statistically significant difference between MS and control patients.

Adult↗

Linkage analysis of candidate myelin genes in familial multiple sclerosis.

Multiple sclerosis (MS) is an autoimmune demyelinating disease of the central nervous system. A complex genetic etiology is thought to underlie susceptibility to this disease. The present study was designed to analyze whether differences in genes that encode myelin proteins influence susceptibility to MS. We performed linkage analysis of MS to markers in chromosomal regions that include the genes encoding myelin basic protein (MBP), proteolipid protein (PLP), myelin-associated glycoprotein (MAG), oligodendrocyte myelin glycoprotein (OMGP), and myelin oligodendrocyte glycoprotein (MOG) in a well-characterized population of 65 multiplex MS families consisting of 399 total individuals, 169 affected with MS and 102 affected sibpairs. Physical mapping data permitted placement of MAG and PLP genes on the Genethon genetic map; all other genes were mapped on the Genethon genetic map by linkage analysis. For each gene, at least one marker within the gene and/or two tightly linked flanking markers were analyzed. Marker data analysis employed a combination of genetic trait model-dependent (parametric) and model-independent linkage methods. Results indicate that MAG, MBP, OMGP, and PLP genes do not have a significant genetic effect on susceptibility to MS in this population. As MOG resides within the MHC, a potential role of the MOG gene could not be excluded.

DNA Primers↗

Indirect evidence for early widespread gray matter involvement in relapsing-remitting multiple sclerosis.

Multiple sclerosis (MS) has traditionally been viewed as an inflammatory demyelinating white matter (WM) disease of the central nervous system. However, recent pathology and MRI studies have shown lesions in the gray matter (GM) as well. To ascertain the extent of GM involvement, we obtained with nonlocalizing proton MR spectroscopy the concentration of N-acetylaspartate (NAA), a metabolite found almost exclusively in neuronal cells, T2-lesion loads, and GM and WM fractions in the entire brain of 71 relapsing-remitting (RR) MS patients (51 women, 20 men, 25-55 years old) and 41 healthy controls (27 women, 14 men, 23-55 years old). The average whole-brain NAA (WBNAA) difference between the patients and the controls was -2.9 mM (-22%, P < 0.0001); range: +1.2 to -7.8 mM (+8% to -63%). The patients' median T2 lesion volume was 5.5 (range: 0.140-28) cm(3). GM and WM comprised 50.4 +/- 3.8% and 30.4 +/- 5.0% (mean +/- standard deviation), respectively, of the total brain volume in the patients; 53.8 +/- 3.7% and 35.4 +/- 4.7% in the controls. Because WM and GM constitute approximately 40% and 60% of the brain parenchyma, respectively, and the NAA concentration in the former is 2/3 of the latter, WBNAA loss greater than 40% x 2/3 = 27% cannot be explained in terms of WM (axonal) pathology alone and must include widespread GM (neuronal) deficits. Therefore, the concept of MS, even at its earlier stages, as a WM disease might need to be reexamined.

Adult↗

A 21 point unifying hypothesis on the etiology and treatment of multiple sclerosis.

Multiple sclerosis (MS) is postulated to be a cell mediated autoimmune disease directed against central nervous system myelin components. Our understanding of the disease has been enhanced by a number of factors: 1) advances in our understanding of the immune system; 2) clinical trials which are beginning to identify treatments which can affect MS; 3) a better understanding of the clinical features of MS; and 4) advances in MRI imaging of the brain. Based on the current state of knowledge, this paper proposes a 21 point unifying hypothesis on the etiology and treatment of the disease. This hypothesis makes a series of assumptions, many of which are unproven, and is presented as a framework from which to investigate and treat the disease, not as a established biology. It is hypothesized that the underlying pathogenesis of MS is related to an inappropriate class of immune response against myelin antigens favoring proinflammatory Th1 versus anti-inflammatory Th2 or Th3 type responses. Environmental and genetic factors predispose toward MS by affecting the class of response and effectiveness of treatment is also related to how it impacts on this common final pathway. Because of epitope spreading, there is not one autoantigen involved in MS and the progressive form of MS differs immunologically from the relapsing remitting form. Viruses trigger and perpetuate MS, although MS is not related to a persistent viral infection. Because MS is a multifactorial disease, there are clinical and perhaps immunological subtypes of MS and a single type of treatment is unlikely to control the disease in all patients. Thus, there will be responders and non-responders to each effective therapy and ultimately combination therapy will be required to cure the disease.

Humans↗