PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Multiple Sclerosis, Chronic Progressive”

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 127 records · Page 7Linked to original sources

Immune complexes and the complement factors C4 and C3 in cerebrospinal fluid and serum from patients with chronic progressive multiple sclerosis.

Immune complexes (IC) have been found in both serum and cerebrospinal fluid (CSF) in multiple sclerosis (MS). The complement system is known to play a major role as a mediator of inflammation in immune complex disease. Therefore, we have investigated paired samples of serum and CSF from 32 patients with progressive MS for IC, the levels of the complement factors C4 and C3, and presence of their activation products (AP). IC was found in serum from 17 of the 32 MS patients (53%) and in CSF from 9 of 31 MS patients (29%). No correlation was found between the occurrence of IC in serum and in CSF. The levels of C3 in serum and CSF from the MS patients did not differ from the levels in a control group, whereas the levels of C4 in MS-serum were elevated and the C4 levels in MS-CSF reduced. A low level of CSF-C4 correlated significantly to the occurrence of CSF-IC. AP of C4 and C3 in serum were seen in 11 of the 32 patients (34%), appearing significantly more frequently among patients with circulating IC. No C4- or C3AP could be identified in CSF.

Adult↗

Interleukin-1 corrects the defective autologous mixed lymphocyte response in multiple sclerosis.

Patients with chronic progressive multiple sclerosis (MS) have alterations of T cell regulation that can be measured by in vitro assays and include decreases of the autologous mixed lymphocyte reaction (AMLR). Whether a defect in cytokine secretion was involved in the altered AMLR was investigated in 29 MS patients and 13 age- and sex-matched controls. The response of CD4+ T cell populations to irradiated non-T cells was decreased in MS as compared to control subjects. As previously reported, decreases in the AMLR were similarly observed with whole T cells of MS subjects as compared to controls. The addition of recombinant interleukin (IL)-1 to cultures of either whole T cells or CD4+ T cells with irradiated non-T cells in the AMLR corrected the immune defect in subjects with MS but had no effect on the AMLR in control subjects. In contrast, addition of rIL-2 or rIL-4 to the AMLR did not correct the decreased AMLR in MS patients as compared to controls. The lymphokines IFN-gamma and TGF-beta 2 both decreased the AMLR in MS patients and controls while TNF had no effect. Further, the magnitude of the AMLR response corresponded to IL-1 secretion induced by LPS in the non-T cell population. These studies indicate that defects in IL-1 may be related to immune defects of suppression in MS patients. Selective correction of immunoregulatory defects using lymphokines or their inducers in subjects with autoimmune diseases such as MS may be possible.

CD4-Positive T-Lymphocytes↗

Cytokine analysis in multiple sclerosis by competitive RT - PCR: A decreased expression of IL-10 and an increased expression of TNF-alpha in chronic progression.

Multiple sclerosis (MS) is an inflammatory, demyelinating disease that is specific to the central nervous system. Cytokines are thought to be key mediators of the autoimmune attack against central nervous system myelin in MS. To investigate the involvement of cytokines in MS, the mRNA levels of interferon gamma (IFN-gamma), tumor necrosis factor alpha (TNF-alpha), interleukin-4 (IL-4) and interleukin-10 (IL-10) in peripheral blood mononuclear cells without stimulation in vitro were quantified by a competitive reverse transcription polymerase chain reaction technique. The level of IL-10 specific mRNA was significantly decreased in 47 MS patients compared with 42 healthy controls (P<0.0001). TNF-alpha was significantly increased in MS patients compared with healthy controls (P=0.014), especially in the patients with chronic progressive MS (P=0.0003). Thus we conclude that there are significant in vivo alterations in cytokine gene expression in the periphery in MS.

Adult↗

Interleukin-12 is detectable in sera of patients with multiple sclerosis - association with chronic progressive disease course?

Multiple sclerosis (MS) is widely accepted as a systemic T- cell-mediated autoimmune disease with a T-helper type-1 (TH-1) profile of cytokine production. We addressed the question whether interleukin-12 (IL-12), as a central mediator of TH-1-cell activities, is detectable in sera of MS patients, and if there is any association with disease activity. We analysed 171 sera of patients with MS and meningitis, and healthy controls. IL-12 p40 protein was detectable at low levels in MS patients (median 43 pg/ml) and controls (median 49 pg/ml). Analysing different disease courses and activities, a significant elevation in stable primary progressive MS cases compared with controls (median 66 pg/ml) was found. IL-12 p40 protein was not detectable in cerebrospinal fluid probes of 10 patients. We conclude that the function of IL-12 in MS depends on expression and degradation of the different proteins. These could act proinflammatory as well as limiting the disease process.

Adult↗

Use of corticosteroids in multiple sclerosis by consultant neurologists in the United Kingdom.

OBJECTIVES: To survey the use of corticosteroids in multiple sclerosis as recommended by United Kingdom consultant neurologists. METHODS: A postal questionnaire covering the use of corticosteroids for acute multiple sclerosis relapse and chronic progressive multiple sclerosis with regard to frequency of use, type of corticosteroid, and dosage regime was sent to all members of the Association of British Neurologists with a United Kingdom address. RESULTS: Two hundred and twelve United Kingdom consultant neurologists replied to the survey (74% response rate). Eighty six per cent indicated that they prescribed corticosteroids in more than one quarter of acute multiple sclerosis relapses seen. Intravenous methylprednisolone was recommended at some time by 99% of consultant neurologists, the most popular regime being 1g daily for 3 days (74%; 154/ 208). Over one half (53%; 109/206) never recommended a subsequent tapering course of oral corticosteroids; of those that did, 25% (24/96) recommended a tapering course lasting more than 1 month. Eighty eight per cent (1811206) of prescribers of intravenous methylprednisolone were able to offer the course as a day case on the ward; 7% (151206) at an outpatient clinic; and 5% (111206) at home. Almost three quarters of neurologists recommended oral corticosteroids for some acute relapses, although the most popular response was for occasional use only (48%; 1011212). Forty five per cent (961211) at least occasionally recommended steroids for patients with chronic multiple sclerosis not experiencing an acute relapse. CONCLUSIONS: Although the vast majority of consultant neurologists would prescribe intravenous methylprednisolone for acute multiple sclerosis relapse at some time, the use of corticosteroids for multiple sclerosis was otherwise variable. There seemed to be little consensus about the use of oral steroids in acute relapse, the prescribing of a tapering course of oral steroids after intravenous methylprednisolone, or the utility of steroids in chronic multiple sclerosis. Variability of prescribing recommendations probably reflects a lack of clear evidence in the face of a wide range of clinical situations, variable access, and timing of access to neurologists in the acute phase of relapse and pressure on neurologists to treat in an otherwise "hopeless" situation. Large multicentred trials are needed to consider these issues.

Administration, Oral↗

Multiple sclerosis: comparison of the human T-cell response to S100 beta and myelin basic protein reveals parallels to rat experimental autoimmune panencephalitis.

The adoptive transfer of autoreactive S100 beta-specific T cells induces experimental autoimmune panencephalomyelitis and uveoretinitis in the Lewis rat, mimicking the distribution of lesions seen in a subset of patients with multiple sclerosis. We studied the frequency and functional properties of the human T-cell response to S100 beta in eight patients (two relapsing-remitting multiple sclerosis, one chronic-progressive multiple sclerosis, two with multiple sclerosis and uveitis, two neuromyelitis optica, one panuveitis) and in seven healthy individuals, using bovine S100 beta for T-cell stimulation. Both in patients and controls, the frequency of S100 beta-specific T-cell responses was half of that obtained for myelin basic protein (MBP), and only 10% of that obtained using purified protein derivative (PPD). The stimulation indices obtained in response to S100 beta were also less than half those obtained with either MBP or PPD. However, four long-term S100 beta-specific T-cell lines were established and studied in more detail. The four T-cell lines all exhibited a CD4+, CD8-, T-cell receptor alpha beta + surface phenotype and secreted tumour necrosis factor-alpha, interferon-gamma, interleukin-10 and interleukin-4 upon antigenic stimulation, but they were heterogenous with respect to T-cell receptor usage; two T-cell lines expressed V beta 2, one V beta 6.7 and one V beta 13. Antigen-specificity was confirmed using bovine S100 beta beta and alpha beta-isoforms, as well as a recombinant rat S100 beta preparation. The response to S100 beta was shown to the HLA-(human leukocyte antigen-) DR-restricted for two of the S100 beta-specific T-cell lines. Human S100 beta-specific T-cell lines were cytotoxic, although to a lesser extent than MBP-specific T-cell lines derived from the same donors. The phenotypic and functional properties of human S100 beta-specific T-cell lines raise the possibility that these T cells are pathogenic, as they are in the rat. The low frequency and proliferative index of S100 beta-specific, as opposed to MBP-specific T-cell responses suggests that the T-cell response to this widely expressed calcium-binding protein is under more efficient regulatory control.

Adult↗

Persistence of antibrain antibodies in cerebrospinal fluid during plasmapheresis for multiple sclerosis.

A man with chronic progressive multiple sclerosis received a 10 day course of treatment with adrenocorticotrophic hormone without beneficial effect. He then received six sessions of plasmapheresis, again without improvement. Treatment with adrenocorticotrophic hormone had no effect on serum antibrain antibody titres, but plasmapheresis virtually eliminated the antibodies from serum and caused a fall in serum IgG concentrations; neither treatment had any effect on the IgG concentration and antibody titre in the cerebrospinal fluid. Treatment with plasmapheresis may fail in patients with multiple sclerosis because it does not remove antibrain antibodies from the intrathecal space.

Adrenocorticotropic Hormone↗

Natural history of multiple sclerosis: a unifying concept.

Multiple sclerosis can follow very different patterns of evolution and variable rates of disability accumulation. This raises the issue whether it represents one or several distinct diseases. We assessed demographic and clinical characteristics in 1844 patients with multiple sclerosis that we categorized according to the classification of Lublin and Reingold (1996) into 1066 (58%) relapsing-remitting, 496 (27%) secondary progressive, 109 (6%) progressive relapsing and 173 (9%) primary progressive cases of multiple sclerosis. Relapsing-remitting and secondary progressive cases shared similar age at disease onset (median = 28.7 versus 29.5 years; P = 0.21), initial symptoms of the relapsing-remitting phase, degree of recovery from the first neurological episode, and time from the first to the second episode. By contrast, disease duration was twice as long in secondary progressive than in relapsing-remitting cases (mean +/- SD = 17.6 +/- 9.6 versus 8.7 +/- 8.6 years; P < 0.001). Progressive relapsing and primary progressive cases were essentially similar in their clinical characteristics. In patients experiencing a progressive course, median age at onset of progressive phase was similar in secondary progressive cases and in cases who were progressive from onset (39.1 versus 40.1 years; P = 0.47). The proportion of cases with superimposed relapses during progression was approximately 40% in both categories. Finally, the 1562 patients with an exacerbating-remitting initial course and the 282 patients with a progressive initial course of the disease were essentially similar with respect to the time course of disability accumulation from assignment to a given disability score, and the age at assignment of disability landmarks. These observational data suggest that the clinical phenotype and course of multiple sclerosis are age dependent. Relapsing-remitting disease can be regarded as multiple sclerosis in which insufficient time has elapsed for the conversion to secondary progression; secondary progressive forms as relapsing-remitting multiple sclerosis that has 'grown older'; and progressive from onset cases as multiple sclerosis 'amputated' from the usual preceding relapsing-remitting phase. Times to reach disability milestones, and ages at which these landmarks are reached, follow a predefined schedule not obviously influenced by relapses, whenever they may occur, or by the initial course of the disease, whatever its phenotype. This leads to a unifying concept of the disease in which primary and secondary progression might be regarded as essentially similar. From the clinical and statistical positions, multiple sclerosis might be considered as one disease with different clinical phenotypes rather than an entity encompassing several distinct diseases-the position of complexity rather than true heterogeneity.

Adult↗

Disease steps in multiple sclerosis: a longitudinal study comparing disease steps and EDSS to evaluate disease progression.

Clinical assessment of outcome in multiple sclerosis (MS) patients is problematic since the disease can affect different aspects of the central nervous system and follow a variable course. Recently, we developed Disease Steps, a simple approach for evaluating disease progression. Previously, we found that Disease Steps was easy to use, had uniformly distributed scores and low inter-rater variability. Our current objective was to test the long-term use of Disease Steps together with the most widely utilized clinical outcome measure in MS, the Expanded Disability Status Scale (EDSS) in assessing clinical progression. Over 4 years, 804 patients were classified using both EDSS and Disease Steps. Each patient was assessed at least twice. Follow-up results included annual status and time-to-event analysis examining median staying times within a level of Disease Steps or EDSS. We found that the two scales behaved similarly and correlated strongly with each other. For both Disease Steps and EDSS, patients with milder levels of disability and relapsing-remitting disease demonstrated a higher likelihood of changing scores over time and shorter median staying times compared to more disabled, chronic progressive patients. These findings have important implications for patient selection in clinical trials and for the design of future measurements of clinical outcome in MS. Furthermore, Disease Steps may serve as a simple, practical tool for the nonspecialty neurologist to follow patients over time and serve as a guide in therapeutic decision making. Our findings further document the general progressive nature of MS when a large cohort is followed in an MS specialty clinic over time.

Adult↗