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Re-expression of PSA-NCAM by demyelinated axons: an inhibitor of remyelination in multiple sclerosis?

Multiple sclerosis is affecting approximately 1 out of every 1000 individuals in the western world. After axons are denuded of myelin in the early stages of the disease, remyelination occurs, but eventually this process fails, and permanent disability is the result. During development, the polysialylated form of the neural cell adhesion molecule NCAM, PSA-NCAM, is expressed at the axonal surface and acts as a negative regulator of myelination, presumably by preventing myelin-forming cells from attaching to the axon. Removal of PSA-NCAM from the axonal surface is a prerequisite for the initiation of myelination. We questioned whether, in multiple sclerosis, re-expression of PSA-NCAM by axons could occur, and therefore account for the failure of remyelination. Forty multiple sclerosis lesions from 24 different post-mortem multiple sclerosis cases were selected by histological methods and analysed by immunohistochemistry. Demyelinated lesions and partially remyelinated lesions (shadow plaques) were studied. Controls consisted of post-mortem brain tissue from patients with amyotrophic lateral sclerosis and without neurological disease. We showed that PSA-NCAM, normally absent from adult brain, is re-expressed on demyelinated axons in the plaques. Within shadow plaques, remyelinated axons do not express PSA-NCAM. Re-expression of PSA-NCAM could act as an inhibitor of remyelination and participate in disease progression in multiple sclerosis.

Axons↗

Patterns of cerebrospinal fluid pathology correlate with disease progression in multiple sclerosis.

Multiple sclerosis is a chronic inflammatory and demyelinating disease of the CNS with, as yet, an unknown aetiology. Temporal profile, intensity and treatment responses are highly variable in multiple sclerosis suggesting pathogenetic heterogeneity. This hypothesis has been supported by histopathological studies disclosing at least four different subtypes of acute demyelinating lesions. Although stratification of multiple sclerosis patients into these categories would be extremely helpful for clinical studies, this approach is impractical as it requires brain biopsy. In this study we investigated CSF cytology from 60 multiple sclerosis patients by flow cytometry. We identified different patterns of CSF cytology, which were independent of immunological parameters in the peripheral blood. The most variable CSF parameter was the B cell to monocyte ratio, which remained stable during different phases of disease in selected patients. The ratio correlated with disease progression but not with disability or disease duration in a retrospective, consecutive analysis. A high ratio (predominance of B cells) was associated with more rapid disease progression, whereas a low ratio (predominance of monocytes) was found in patients with slower progression. Our study demonstrates the existence and potential clinical relevance of different CSF cytology patterns. We hypothesize that CSF cytology patterns may reflect the heterogeneity in the pathogenesis of multiple sclerosis.

Adolescent↗

Neuropsychiatric manifestations of multiple sclerosis.

Multiple sclerosis is one of the most frequently observed neurological causes of progressive disability in early to middle adulthood. The disease is variable in its presentation and course, affects roughly 100 to 300 per 100,000 persons within the US alone and is slightly more common among females than males. Multiple sclerosis places substantial burdens on patients, families and caregivers. Its presentation includes disturbances in cognitive abilities and psychiatric functioning, as well as motor difficulties. This article reviews the current literature on the neuropsychiatric manifestations of multiple sclerosis. Cognitive domains discussed include general cognitive functioning, learning and memory ability, attention, processing speed, executive functioning, visual perceptual ability and language functioning. Attention is also given to alterations in neuropsychiatric functioning associated with disease progression and across various disease subtypes. In addition, reports are also reviewed regarding various psychiatric disturbances, affective changes, quality of life issues and fatigue and pain in individuals with multiple sclerosis. Finally, factors pertaining to pediatric populations in multiple sclerosis are addressed.

Attention↗

Defective CD3 mediated proliferation and LPS responsiveness in multiple sclerosis.

Multiple sclerosis [MS] is a chronic inflammatory disease of the central nervous system which has been postulated to be a T cell mediated disease. We examined proliferation of mononuclear cells to OKT3 mAb, Con A, ionomycin plus PMA and human myelin basic protein in subjects with relapsing-remitting and chronic progressive multiple sclerosis. Age and sex matched controls demonstrated a good proliferation to anti-CD3 mAb whereas subjects with relapsing-remitting multiple sclerosis showed a significantly decreased anti-CD3 mAb response. There was no difference in mitogen, ionomycin plus PMA or human MBP proliferation between controls and MS subjects. There was also a trend for decreasing anti-CD3 mAb proliferation in patients with chronic progressive multiple sclerosis compared to controls. LPS significantly decreased anti-CD3 mAb proliferation in controls but not in the MS subjects. An abnormality of signal transduction via the CD3 T-cell receptor complex in T cells and responsiveness to the immunomodulatory effect of IFN inducers may exist in multiple sclerosis.

CD3 Complex↗

The effect of corticosteroids on serum and cerebrospinal fluid nitric oxide levels in multiple sclerosis.

Multiple sclerosis is a disease characterized by perivascular infiltrates and demyelination of the white matter in the central nervous system. In this study, we compared the serum and cerebrospinal fluid nitric oxide levels before and after methylprednisolone therapy, and during remission period, and investigated the relationship of nitric oxide to the activity of multiple sclerosis. Cerebrospinal fluid and serum nitric oxide levels were measured blind as nitrite plus nitrate, using the nitrate reductase and Griess reaction method in 20 patients with multiple sclerosis before and after corticosteroid therapy, and during remission period, and in 20 control subjects. Mean cerebrospinal fluid and serum nitric oxide levels were highest in the pretreatment group and lowest in the control group. There was no correlation with nitric oxide levels in these two groups. Although corticosteroid therapy did not have any great effect on Expanded Disability Status Scales, it led to a decrease in nitric oxide levels. The possible cause of this might be the inhibition of nitric oxide synthesis by methylprednisolone, or a decrease in multiple sclerosis activity. We conclude that serum or cerebrospinal fluid nitric oxide levels do not reflect the activity in multiple sclerosis.

Adolescent↗

Trans-blood-brain-barrier albumin leakage and comparisons of intrathecal IgG synthesis calculations in multiple sclerosis patients. Multiple Sclerosis Study Group, Alpha Interferon Study Group, and Azathioprine Study Group.

We compared four equations for estimating intrathecal IgG synthesis (Tibbling and Link IgG index (T/L), Schuller and Sagar (S/S), Reiber and Felgenhauer (R/F), and Tourtellotte (T) equations) using data from chronic progressive MS patients. For normal albumin leakage (AL) (< 75 mg/day-intact BBB), T (r = 0.15) and R/F (r = 0.10) showed comparable positive correlations with trans-BBB AL, T/L (r = -0.10) was negative and S/S was uncorrelated (r = 0.05). For abnormal AL (> or = 75 mg/day), the R/F (r = -0.24), S/S (r = -0.37) and the T/L (r = -0.22) equations overcorrected, whereas the T (r = 0.07) equation values did not correlate with AL. The albumin index and trans-BBB albumin leakage rate formulae gave essentially identical estimates of BBB leakage (r = 0.99, P = 0.0001). We conclude that in chronic progressive MS patients the R/F, T/L and S/S formulae overcompensate for large abnormal T-BBB albumin leakage rates. The T formula corrected best for IgG transudate at high AL rate values in MS.

Albumins↗

Impact of interferon beta-1a on neurologic disability in relapsing multiple sclerosis. The Multiple Sclerosis Collaborative Research Group (MSCRG).

BACKGROUND AND OBJECTIVE: A phase III double-blind, placebo-controlled clinical trial demonstrated that interferon beta-1a (IFN beta-1a) (Avonex, Biogen) significantly delayed progression of disability in relapsing MS patients. The primary clinical outcome was time from study entry until disability progression, defined as > or = 1.0 point worsening from baseline Kurtzke Expanded Disability Status Scale (EDSS) score persisting for at least two consecutive scheduled visits separated by 6 months. The objective of this study was to examine the magnitude of benefit on EDSS and its clinical significance. METHODS: Post hoc analyses related to disability outcomes using data collected during the double-blind, placebo-controlled phase III clinical trial. RESULTS: (1) Clinical efficacy related to disability did not depend on the definition of disability progression. A significant benefit in favor of IFN beta-1a was observed when > or = 2.0 point worsening from baseline EDSS was required or when worsening was required to persist for > or = 1.0 year. (2) Placebo recipients who reached the primary clinical outcome worsened by a larger amount from baseline EDSS than did IFN beta-1a recipients who reached the primary study outcome. (3) Significantly fewer IFN beta-1a recipients progressed to EDSS milestones of 4.0 (relatively severe impairment) or 6.0 (unilateral assistance needed to walk). (4) Cox proportional hazards models demonstrated that the only baseline characteristic strongly correlated with longer time to disability progression was IFN beta-1a treatment. CONCLUSIONS: The primary clinical outcome for the IFN beta-1a clinical trial underestimated clinical benefits of treatment. Results in this report demonstrate that IFN beta-1a treatment is associated with robust, clinically important beneficial effects on disability progression in relapsing MS patients.

Adolescent↗

Thalamic neurodegeneration in multiple sclerosis.

Multiple sclerosis is still regarded primarily as a disease of the white matter. However, recent evidence suggests that there may be significant involvement of gray matter. Here, we have used magnetic resonance imaging and magnetic resonance spectroscopy in vivo and histopathology postmortem to estimate thalamic neuronal loss in patients with multiple sclerosis. Our results show that neuronal loss in multiple sclerosis can be substantial (30-35% reduction). We conclude that a neurodegenerative pathology may make a major contribution to the genesis of symptoms in multiple sclerosis.

Adult↗

Reliability of two measures of health-related quality of life in patients with multiple sclerosis.

Multiple sclerosis is a chronic neurological disease which can cause a variety of symptoms (motor and sensory impairment, visual problems, bladder and bowel problems, sexual dysfunction, and decline in cognitive function). Both the Medical Outcome Study Short Form-36, a generic questionnaire regarding health-related quality of life, and the Disability and Impact Profile, a similar questionnaire developed for people with chronic diseases, are used regularly to assess patients with multiple sclerosis. Over a 6-mo. interval 187 patients with multiple sclerosis completed these questionnaires twice. Internal consistency of both questionnaires at Times 1 and 2 was .60 or above for all eight scales of the Medical Outcome Study Short Form-36 and five scales of the Disability and Impact Profile. Estimates of test-retest reliability for three scales of the Medical Outcome Study Short Form-36 were below .60, but for all scales of the Disability and Impact Profile were .60 or higher. The two questionnaires appeared to be reliable for our sample of patients with multiple sclerosis.

Adult↗

Immunosuppressive treatment of multiple sclerosis.

Multiple sclerosis is thought, by many investigators, to be an immunologic disease. Therefore, a rationale exists for treating this disease by immunosuppressive therapy. In exacerbating-remitting multiple sclerosis, corticosteroids and adrenocorticotropic hormone are the most widely used drugs; high doses of intravenously administered methylprednisolone have recently gained favor. Chronic progressive multiple sclerosis has been treated with a number of immunosuppressive regimens, several of which have shown promise to date. Cyclophosphamide and azathioprine have been used most often and are reviewed in this report, as are other agents currently under investigation. No firm guidelines for the treatment of chronic progressive multiple sclerosis can be offered, but an approach to immunosuppressive therapy is suggested in this review.

Adrenal Cortex Hormones↗

Recent advances in immunology in multiple sclerosis.

Multiple sclerosis is an inflammatory demyelinating disease of the central nervous system that is of possible autoimmune origin. This article is divided into three parts, reviewing recent advances in three selected topics regarding the immunology of multiple sclerosis. The first part addresses the consequences of T cell and oligodendrocyte death in the inflammatory lesions. The second covers the recent experimental evidence favouring the involvement of infectious agents in the pathophysiology of central nervous system autoimmune diseases. The third part concerns the mode of action of interferon-beta in multiple sclerosis. These new advances have lead to a better understanding of the immunopathology of multiple sclerosis and therefore open new therapeutic possibilities.

Cell Death↗

Characteristics of T-cell receptor repertoire and myelin-reactive T cells reconstituted from autologous haematopoietic stem-cell grafts in multiple sclerosis.

Multiple sclerosis is thought to involve aberrant immune responses to myelin autoantigens. Haematopoietic stem-cell transplantation (HSCT) is in clinical trials for progressive multiple sclerosis based on the rationale that it destroys aberrant immune system, while recapitulation of lymphocyte ontogeny might alter the immune system and slow down disease progression. This study was undertaken to analyse characteristics of the T-cell receptor (TCR) repertoire, serum cytokine profile and the T-cell responses to myelin basic protein (MBP) in the reconstituted immune system in progressive multiple sclerosis. The study revealed that, following autologous HSCT, the T-cell immunity recovered in two distinctive phases. The first phase was characterized by limited T-cell immunity as a result of selective expansion of pre-existing T cells commonly expressing the TCR beta chain variable region (TCR BV) 20 and increased serum cytokine production during the first several months. The second phase of T-cell reconstitution coincided with increased thymic T-cell output 9-12 months after HSCT. T cells reconstituted from stem-cell grafts had the distinctive properties of comprehensive T-cell immunity and a broad TCR repertoire. T cells recognizing MBP were initially depleted by immunoablation and rapidly expanded from the reconstituted T-cell repertoire in 12 months. The reconstituted MBP-reactive T cells exhibited a broader epitope recognition repertoire while maintaining the same skewed reactivity pattern compared with that seen at baseline. The findings have important implications in the understanding of the role of HSCT as a potential treatment for multiple sclerosis.

Autoantigens↗

Preferential T-cell receptor beta-chain variable gene use in myelin basic protein-reactive T-cell clones from patients with multiple sclerosis.

Multiple sclerosis is an autoimmune disease in which T lymphocytes reactive to myelin basic protein (BP) could play a central role. T cells specific for BP were cloned from the blood of multiple sclerosis patients and normal individuals, and expression of T-cell receptor variable region genes was analyzed. A remarkable bias for use of beta-chain variable region (V beta) 5.2 and, to a lesser extent, V beta 6.1 was seen among BP-specific clones from patients but not from controls. The preferential use of V beta 5.2 for BP recognition did not reflect altered expression of this V beta in the peripheral repertoire. Interestingly, shared V beta 5.2 usage was apparent for clones specific for different BP determinants, even when derived from the same individual. The concurrent demonstration by others (J. R. Oksenberg, M. A. Panzara, A. B. Begovich, H. Erlich, R. Murray, M. Sherritt, S. Stuart, C. C. Bernard, and L. Steinman, personal communication) that T cells within demyelinating areas of multiple sclerosis brains preferentially express V beta 5.2 and V beta 6.1 suggests that the BP-specific clones derived from blood may be relevant to disease pathogenesis. These findings may have important implications for the treatment of multiple sclerosis.

Base Sequence↗

Femoral and sciatic nerves block (BiBlock) in orthopedic traumatologic lower limbs surgery in patients with multiple sclerosis.

Multiple sclerosis is a progressive demyelinating disease which affects large areas of the brain and of the spinal cord. Stressful events, surgical procedures, general anaesthesia and central blocks seem to be responsible for relapses, with worsening of the disease. So, when we scheduled 2 patients with multiple sclerosis for lower limbs orthopedic traumatologic surgery, we decided to use a peripheral block, and in particular a BiBlock. The patients' evaluation in the immediate postoperative course and 30 days after surgery has shown no relapses of the disease. In the literature, however, data about anaesthesia and multiple sclerosis are few and controversial, sometimes in contrast. Anyway, the use of peripheral blocks has neither anatomic, nor metabolic interferences with the lesion sites of multiple sclerosis. In conclusion, peripheral block is safe and it is the technique of choice for this type of patients, when surgery allows it.

Accidental Falls↗

Development of biomarkers in multiple sclerosis.

Multiple sclerosis is a complex disease, as several pathophysiological processes (including inflammation, demyelination, axonal damage and repair mechanisms) participate in the disease process. Furthermore, as new pathological evidence reveals, these processes are not uniformly represented across patient populations but can selectively predominate in individual patients, thus contributing to the heterogeneity in phenotypic expression of the disease, its prognosis and response to therapies. While the armamentarium of available therapies for multiple sclerosis broadens, little is known about factors that predict treatment response in individual patients to a specific drug. More importantly, we are beginning to understand that, analogous to cancer therapy, the successful therapeutic strategy in multiple sclerosis might ultimately involve the combination of different therapeutics targeting several dominant pathophysiological processes. The development of these process-specific therapies will be impossible without the use of biomarkers that reflect the targeted process, can select patient population in which the targeted process is prevailing and can aid during the more rapid screening of therapeutic agents in the early phase of their development. This review summarizes the general concepts of biomarkers and their potential use as surrogate endpoints and tailors these concepts to specific applications in multiple sclerosis research.

Biomarkers↗

Diagnosis and management of multiple sclerosis.

Multiple sclerosis, an idiopathic inflammatory disease of the central nervous system, is characterized pathologically by demyelination and subsequent axonal degeneration. The disease commonly presents in young adults and affects twice as many women as men. Common presenting symptoms include numbness, weakness, visual impairment, loss of balance, dizziness, urinary bladder urgency, fatigue, and depression. The diagnosis of multiple sclerosis should be made by a physician with experience in identifying the disease. Diagnosis should be based on objective evidence of two or more neurologic signs that are localized to the brain or spinal cord and are disseminated in time and space (i.e., occur in different parts of the central nervous system at least three months apart). Magnetic resonance imaging with gadolinium contrast, especially during or following a first attack, can be helpful in providing evidence of lesions in other parts of the brain and spinal cord. A second magnetic resonance scan may be useful at least three months after the initial attack to identify new lesions and provide evidence of dissemination over time. It is critical to exclude other diseases that can mimic multiple sclerosis, including vascular disease, spinal cord compression, vitamin B12 deficiency, central nervous system infection (e.g., Lyme disease, syphilis), and other inflammatory conditions (e.g., sarcoidosis, systemic lupus erythematosus, Sjögren's syndrome). Symptom-specific drugs can relieve spasticity, bladder dysfunction, depression, and fatigue. Five disease-modifying treatments for multiple sclerosis have been approved by the U.S. Food and Drug Administration. These treatments are partially effective in reducing exacerbations and may slow progression of disability.

Adjuvants, Immunologic↗

The possible role of prolactin in the immunopathogenesis of multiple sclerosis.

Multiple sclerosis is a disease of the central nervous system characterized by multiple areas of inflammation and demyelination in the white matter of brain and spinal cord. A complex mechanism of the immunopathogenesis of the disease involves mononuclear cells infiltrating multiple sclerosis plaques, as well numerous cell products, such as interleukins, interferons, certain growth factors, etc. Some recent studies have emphasized the immunoregulatory role of certain neuroendocrine peptides, including prolactin. Prolactin, a hypophyseal hormone which is also produced by activated immunocytes, has been considered in this work as a co-factor participating in the immunopathogenic mechanism of multiple sclerosis.

Central Nervous System↗