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Biomedical subjects

Per Soelberg Sorensen

Publications and source records attributed to Per Soelberg Sorensen.

15 recordsLinked to original sources

IVIG enters the central nervous system during treatment of experimental autoimmune encephalomyelitis and is localised to inflammatory lesions.

Intravenous immunoglobulin (IVIG) treatment reduces the relapse rate in relapsing-remitting multiple sclerosis (MS) and may interfere with MS pathology through its various anti-inflammatory and immunomodulatory properties. It is presently unknown whether IVIG enters the central nervous system (CNS) in sufficient amounts to influence the local immune response within the brain and spinal cord, or if the treatment effects are entirely due to peripheral actions of IVIG. The purpose of the present study was to evaluate if IVIG radiolabeled with 99mTc enters the CNS during treatment of experimental autoimmune encephalomyelitis (EAE) in the susceptible rat strain Dark Agouti. After in vivo administration of 99mTc-IVIG we observed significantly increased accumulation in the brain and spinal cord from rats with EAE. Accumulation of 99mTc-IVIG was not detectable in CNS tissue from control animals. In peripheral tissue samples minor increases in 99mTc-IVIG organ binding were observed in the liver and kidney during EAE. Localisation of 99mTc-IVIG in the brain tissue was visualised by autoradiography and revealed significant accumulation of IVIG only in areas also affected by perivascular inflammation and leakage of serum proteins. In conclusion, the results indicate that significant extravasation of IVIG to the CNS only occurs when blood-brain barrier function is compromised during EAE.

Animals↗

Remyelination is extensive in a subset of multiple sclerosis patients.

Although spontaneous remyelination does occur in multiple sclerosis lesions, its extent within the global population with this disease is presently unknown. We have systematically analysed the incidence and distribution of completely remyelinated lesions (so-called shadow plaques) or partially remyelinated lesions (shadow plaque areas) in 51 autopsies of patients with different clinical courses and disease durations. The extent of remyelination was variable between cases. In 20% of the patients, the extent of remyelination was extensive with 60-96% of the global lesion area remyelinated. Extensive remyelination was found not only in patients with relapsing multiple sclerosis, but also in a subset of patients with progressive disease. Older age at death and longer disease duration were associated with significantly more remyelinated lesions or lesion areas. No correlation was found between the extent of remyelination and either gender or age at disease onset. These results suggest that the variable and patient-dependent extent of remyelination must be considered in the design of future clinical trials aimed at promoting CNS repair.

Adult↗

Correlation of global N-acetyl aspartate with cognitive impairment in multiple sclerosis.

BACKGROUND: Whole-brain N-acetyl aspartate (NAA), a measure of neuronal function, can be assessed by multislice echo-planar spectroscopic imaging. OBJECTIVE: To test the hypothesis that the global brain NAA/creatine (Cr) ratio is a better predictor of cognitive dysfunction in multiple sclerosis than conventional magnetic resonance imaging measures. DESIGN: Survey. SETTING: Research-oriented hospitals. PATIENTS: Twenty patients, 16 women and 4 men (mean age, 36 years), with early relapsing-remitting multiple sclerosis (mean Expanded Disability Status Scale score, 2.5). MAIN OUTCOME MEASURES: Correlation between the global NAA/Cr ratio and a cognitive dysfunction factor comprising 16 measures from an extensive neuropsychological test battery that best distinguished patients with multiple sclerosis from healthy control subjects. RESULTS: A significant partial correlation between the global NAA/Cr ratio and the cognitive dysfunction factor was found (partial r = 0.62, P = .01), and 9 cognitively impaired patients had significantly lower global NAA/Cr ratios than 11 unimpaired patients (P = .04). No significant correlations were found between the cognitive dysfunction factor and conventional magnetic resonance imaging measures (ie, brain parenchymal fraction and lesion volume). CONCLUSIONS: Multislice echo-planar spectroscopic imaging provides global metabolic measures that distinguish between cognitively impaired and unimpaired patients with multiple sclerosis and correlate with a global cognitive measure. Standardization of the technique is needed, and larger-scale studies that include healthy controls are suggested.

Adult↗

Persistence of neutralizing antibodies after discontinuation of IFNbeta therapy in patients with relapsing-remitting multiple sclerosis.

OBJECTIVE: The main objective was to follow serum levels of neutralizing antibodies (NABs) against interferon-beta (IFNbeta) after discontinuation of IFNbeta therapy. BACKGROUND: A large proportion of patients treated with recombinant IFNbeta for multiple sclerosis (MS) develop therapy-induced NABs. Knowledge of persistence of NABs after discontinuation of therapy is limited. DESIGN/PATIENTS: A retrospective follow-up study of patients treated in Denmark for relapsing remitting (RR) MS with IFNbeta for at least 12 months. NAB-positive patients, who discontinued therapy, were followed up with measurements of NABs. METHODS: We measured NAB-neutralizing capacity and NAB titres a.m. Kawade using a clinically validated cytopathic effect assay. RESULTS: Thirty-seven patients were included. Mean follow-up time was 22 months. Of the 29 patients with a NAB titre at or above 25 prior to termination of therapy, only three patients reverted to a titre below 25. Of these, two had a titre below 200 and one patient a titre of 600 at the last examination before treatment stop. The longest post-treatment follow-up during which a patient maintained NAB positivity was 59 months. CONCLUSION: NABs against IFNbeta, especially with high titres, tend to persist for a long time after discontinuation of IFNbeta therapy. NABs should always be measured before reinstitution of IFNbeta treatment in NAB-positive patients.

Adjuvants, Immunologic↗

Intravenous immunoglobulin treatment of multiple sclerosis and its animal model, experimental autoimmune encephalomyelitis.

Intravenous immunoglobulin (IVIG) is an established treatment of immune-mediated demyelinating neuropathy. Since IVIG possesses multiple immunomodulatory and anti-inflammatory properties, IVIG therapy may represent a way of interfering with the disease process in multiple sclerosis (MS). In the MS animal model experimental autoimmune encephalomyelitis (EAE), infusions of IVIG significantly reduced disease symptoms as well as the underlying CNS pathology. IVIG was only effective in EAE when administered in a prophylactic treatment protocol, since IVIG infusions during the established phase of EAE did not alter the disease course or the degree of inflammation found in the central nervous system. IVIG also has the potential to act through myelin repair mechanisms as evidenced by work done in the Theilers murine encephalomyelitis virus model of demyelination. Together these observations have led to certain expectations for IVIG as a treatment for MS, and have resulted in various clinical trials. Several controlled trials report beneficial effects of IVIG on relapse rate, new MRI lesions, and disease progression in relapsing-remitting MS, while a remyelinating effect of IVIG has not been documented. IVIG is, therefore, presently regarded as a second-line therapy of MS.

Animals↗

Therapeutic considerations for disease progression in multiple sclerosis: evidence, experience, and future expectations.

In the management of patients with multiple sclerosis (MS), providers are all faced with the highly formidable challenge of ascertaining whether, and to what degree, disease-modifying therapy is effective in the individual patient. While much has been learned in randomized, controlled clinical trials, we cannot simply extrapolate the outcomes of these initiatives and apply them to the care of a single patient. In the future, the application of pharmacogenetic techniques, proteomics, and microarray analysis will yield novel profiling information on individual patients that will substantially refine the specific therapeutic questions of relevance: (1) What is the best treatment for an individual patient? (2) Which patients require intensive therapeutic combination regimens to optimize control of the disease process? (3) What are the appropriate drug dosing targets for an individual patient? and (4) Which patients will be predisposed to the development of drug-related adverse events? Such data may provide a novel variable of drug responsiveness that will mandate its inclusion into the process of covariate analyses for clinical trials.

Disease Progression↗

Multi-slice echo-planar spectroscopic MR imaging provides both global and local metabolite measures in multiple sclerosis.

MR spectroscopy (MRS) provides information about neuronal loss or dysfunction by measuring decreases in N-acetyl aspartate (NAA), a metabolite widely believed to be a marker of neuronal viability. In multiple sclerosis (MS), whole-brain NAA (WBNAA) has been suggested as a marker of disease progression and treatment efficacy in treatment trials, and the ability to measure NAA loss in specific brain regions early in the evolution of this disease may have prognostic value. Most spectroscopic studies to date have been limited to single voxels or nonlocalized measurements of WBNAA only, and longitudinal studies have often been hampered by standardization and reproducibility problems. Multi-slice echo-planar spectroscopic imaging (EPSI) is presented as a promising alternative to single-voxel or nonlocalized spectroscopy for obtaining global metabolite estimates in MS. In the same session, measurements of metabolites in specific brain areas chosen after image acquisition (e.g., normal-appearing white matter (NAWM), gray matter (GM), and lesions) can be obtained. The identification and exclusion of regions that are inadequate for spectroscopic evaluation in global assessments can significantly improve quality and reproducibility, as demonstrated by a low within-subject variance in healthy controls. The reproducibility of the technique makes it a promising tool for future longitudinal spectroscopic studies of MS.

Adult↗

Intravenous immunoglobulin ameliorates experimental autoimmune encephalomyelitis and reduces neuropathological abnormalities when administered prophylactically.

BACKGROUND AND METHODS: Immunomodulation with intravenous immunoglobulin (IVIG) represents a way of interfering with the disease process in multiple sclerosis (MS). In this study, the effects of IVIG on neurological symptoms and central nervous system (CNS) pathology were evaluated in experimental autoimmune encephalomyelitis (EAE), an MS animal model. EAE was induced in susceptible Dark Agouti rats by active immunization with a spinal cord homogenate, and infusions of 1 g/kg IVIG were given prophylactically or therapeutically. RESULTS: The administration of IVIG at the time of immunization significantly suppressed the development of neurological symptoms compared with infusions of placebo (mean EAE score 0.6+/-0.3 versus 2.3+/-0.4). Moreover, the prophylactic IVIG administration resulted in a significant inhibition of the inflammatory response in CNS tissue (inflammation score 1.1+/-0.2 versus 1.8+/-0.2 after placebo). No beneficial effects were obtained by therapeutic IVIG infusions as the EAE disease course and the degree of inflammation and demyelination in the CNS were not different from animals receiving treatment with placebo. CONCLUSIONS: The present study indicates that IVIG reduces the symptoms of EAE by suppression of the CNS inflammation that characterizes CNS pathology in these animals. Taking into account data from clinical trials of IVIG in MS, the results further suggest that IVIG acts primarily during the induction phase of the immune response thus preventing the development of relapses in MS.

Animals↗

Neutralizing antibodies to disease-modifying agents in the treatment of multiple sclerosis.

Protein- and peptide-based disease-modifying agents for multiple sclerosis (MS), including interferon beta (IFNbeta) and glatiramer acetate (GA), have been associated with the formation of antibodies. Neutralizing antibodies (NAbs) block or neutralize the biological effects of the protein or polypeptide, potentially decreasing the therapeutic effects of these agents. Although the clinical relevance of antibodies against GA requires further investigation; both the incidence of NAbs to the three IFNbeta products (IFNbeta1b-Betaseron, IFNbeta1a-Rebif, and IFNbeta1a-Avonex) and the clinical relevance are quite clear. Data from clinical trials of IFNbeta products show that the immunogenicity of Betaseron > Rebif > Avonex and persistent NAbs reduce the clinical efficacy of IFNbeta. Because the initial detection of NAbs in the serum of patients receiving IFNbeta usually occurs between 6 and 15 months and appears to precede any apparent reduction in clinical efficacy by approximately 6 to 12 months, trials with a duration of less than 3 years are problematic when the clinical impact of NAbs is assessed. The potential development of NAbs is an important consideration in selection and monitoring treatment of MS. Long-term prospective studies are needed to further define the clinical effects of NAbs on patients receiving disease-modifying therapies for MS.

Antibody Formation↗

Early-stage multiple sclerosis : what are the treatment options?

Converging evidence from recent years indicates that the current attitude to the use of immunomodulatory drugs in the treatment of multiple sclerosis (MS) may be too conservative. This evidence originates from studies of the pathophysiology and pathology of MS, magnetic resonance imaging (MRI) studies and clinical trials. Several studies have shown that antigen spreading and propagation of self-recognition seem to occur during the clinical progression of MS. The immunopathology may change during the course of disease. Primary selective demyelination can be followed by a secondary oligodendrocyte loss and remyelination becomes less effective. MRI studies have shown that patients with clinically isolated syndromes, who at presentation have more than a few brain lesions on MRI, have a high risk of disease progression over a period of 5-10 years. The most direct evidence comes from two placebo-controlled trials of interferon-beta in very early MS. A delay in time to conversion to clinically definite MS and a significant decrease in MRI activity support an early stage treatment strategy. Taken together, the evidence indicates that treatment with immunomodulatory therapy should be started at an early stage in patients with a high-risk profile for further disease activity, although this may result in over-treatment of a small number of patients. However, further prolonged studies are needed to investigate the long-term benefit of early-stage treatment in MS.

Adjuvants, Immunologic↗

Clinical importance of neutralising antibodies against interferon beta in patients with relapsing-remitting multiple sclerosis.

BACKGROUND: Interferon beta is the first-line treatment for relapsing-remitting multiple sclerosis, but the drug can induce neutralising antibodies against itself, which might reduce effectiveness. We aimed to assess the clinical effect of neutralising antibodies. METHODS: We measured neutralising antibodies every 12 months for up to 60 months in 541 patients with multiple sclerosis, randomly selected from all patients who started treatment with interferon beta between 1996 and 1999. Patients left the study if they changed or discontinued therapy. Antibodies were measured blindly, using antiviral neutralisation bioassays with high, medium, and low sensitivity, and with different neutralising capacities as cutoff value for definition of a neutralising-antibody-positive result. FINDINGS: Patients developed neutralising antibodies independent of age, sex, disease duration, and progression index at start of treatment. Relapse rates were significantly higher during antibody-positive periods (0.64-0.70) than they were during antibody-negative periods (0.43-0.46; p<0.03). When comparing the number of relapses in the neutralising-antibody-positive and neutralising-antibody-negative periods we found odds ratios in the range 1.51 to 1.58 (p<0.03). Time to first relapse was significantly increased by 244 days in patients who were antibody-negative at 12 months (log rank test 6.83, p=0.009). During this short-term study, presence of neutralising antibodies did not affect disease progression measured with the expanded disability status scale. INTERPRETATION: Our findings suggest that the presence of neutralising antibodies against interferon beta reduces the clinical effect of the drug. In patients who are not doing well on interferon beta, the presence of such antibodies should prompt consideration about change of treatment.

Adjuvants, Immunologic↗

The role of intravenous immunoglobulin in the treatment of multiple sclerosis.

Intravenous immunoglobulin (IVIG) has several effects on the immune system that could have a beneficial influence on disease processes in multiple sclerosis (MS). Owing to its anti-inflammatory properties, IVIG may be beneficial in the treatment of acute relapses and in prevention of new relapses. By promoting remyelination, IVIG could have a beneficial effect on disability and disease progression. Four double-blind trials in relapsing-remitting MS have demonstrated that IVIG reduces the relapse rate and the number of gadolinium enhancing lesions, and in this respect seems comparable to established therapies in relapsing-remitting MS, i.e. interferon-beta and glatiramer acetate. The doses of IVIG that have been used for treatment in relapsing-remitting have varied 10-fold, and the ideal dosage of IVIG for treating MS still needs to be determined. Three studies have been performed to assess the effect of IVIG on chronic visual impairment or established motor symptoms in MS. None of these trials could confirm that established symptoms in MS can be reversed by IVIG. In secondary progressive MS, a large randomized placebo-controlled trial has recently shown that IVIG is without beneficial effects in this phase of the disease. In conclusion, IVIG is a valuable alternative for treatment of relapsing-remitting MS in patients who do not tolerate or are unwilling to take the approved injectable medications, but additional studies are needed to establish the role of IVIG in the management of multiple sclerosis.

Central Nervous System↗

Two genome-wide linkage disequilibrium screens in Scandinavian multiple sclerosis patients.

We report the first two genome-wide screens for linkage disequilibrium between putative multiple sclerosis (MS) susceptibility genes and genetic markers performed in the genetically homogenous Scandinavian population, using 6000 microsatellite markers and DNA pools of approximately 200 MS cases and 200 controls in each screen. Usable data were achieved from the same 3331 markers in both screens. Nine markers from eight genomic regions (1p33, 3q13, 6p21, 6q14, 7p22, 9p21, 9q21 and Xq22) were identified as potentially associated with MS in both screens.

Alleles↗