65 research outputs found

    Anti-myelin-associated glycoprotein polyneuropathy coexistent with CREST syndrome

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    Clinical involvement of the peripheral nervous system in the calcinosis cutis, raynaud′s phenomenon, esophageal dismotility, sclerodactyly and telangiectasia (CREST) variant of systemic sclerosis occurs infrequently and is characterized by axonal degeneration due to necrotizing vasculitis. We report a female patient with a known history of CREST syndrome, which developed a slowly progressive, distal symmetric demyelinating sensorimotor polyneuropathy (PN), with tremor and ataxia as prominent features, compatible with anti-myelin associated glycoprotein (MAG) PN. The diagnosis of PN was established by the presence of monoclonal immunoglobulin M anti-MAG antibodies (Thin-Layer Chromatography, Western Blot and enzyme-linked immunoabsorbent assay). Given the evidence that in CREST activation of T-helper cells is observed and that anti-MAG antibodies, despite the fact that they are T-cell-independent, may be influenced by an increase in T-helper function, the coexistence of these two rare autoimmune disorders in the same patient may not be incidental but related to the underlying immunological mechanisms involved

    Anti-myelin-associated glycoprotein polyneuropathy coexistent with CREST syndrome

    No full text
    Clinical involvement of the peripheral nervous system in the calcinosis cutis, raynaud′s phenomenon, esophageal dismotility, sclerodactyly and telangiectasia (CREST) variant of systemic sclerosis occurs infrequently and is characterized by axonal degeneration due to necrotizing vasculitis. We report a female patient with a known history of CREST syndrome, which developed a slowly progressive, distal symmetric demyelinating sensorimotor polyneuropathy (PN), with tremor and ataxia as prominent features, compatible with anti-myelin associated glycoprotein (MAG) PN. The diagnosis of PN was established by the presence of monoclonal immunoglobulin M anti-MAG antibodies (Thin-Layer Chromatography, Western Blot and enzyme-linked immunoabsorbent assay). Given the evidence that in CREST activation of T-helper cells is observed and that anti-MAG antibodies, despite the fact that they are T-cell-independent, may be influenced by an increase in T-helper function, the coexistence of these two rare autoimmune disorders in the same patient may not be incidental but related to the underlying immunological mechanisms involved

    Pulsed corticosteroid treatment in MS patients stabilizes disease activity following natalizumab withdrawal prior to switching to fingolimod

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    Purpose: Interruption of natalizumab (NTM) treatment in multiple sclerosis (MS) patients may be followed by disease reactivation. On the other hand, patients with positive John Cunningham virus (JCV) antibodies treated with NTM over 24 months demonstrate a higher risk for developing progressive multifocal encephalopathy (PML). No established therapeutic approach is available for treating these patients to prevent disease reactivation. Materials and methods: Of the MS patients treated with NTM at the authors’ institution, 30 were found positive for JCV abs. NTM was interrupted followed by a washout period of 6 months. During this period, 20/30 patients received monthly intravenous (i.v.) methylprednisolone (MPD) 1000 mg infusion and regular clinical assessment. On months 3 and 6, brain MRI was performed and 1000 mg MPD was administered for 5 days. Results: All patients were clinically and radiologically stable at the time of NTM break. No clinical relapse was observed during the six-month washout period for the MS patients under monthly MPD treatment, while one patient had a relapse and active lesions in the MRI on month 6. Of the other patients not receiving i.v. MPD regularly after NTM withdrawal, one showed several active lesions in brain MRI and the other had a severe relapse. Conclusions: Despite the limited size of this patients’ cohort, the results of this study support that monthly MPD treatment for 6 months may result in a clinically stable disease status, thus ensuring safe transition to another second-line therapy such as fingolimod, following NTM withdrawal. © 2015 Informa UK Limited, trading as Taylor & Francis Group

    Anti-Aquaporin-1 Autoantibodies in Patients with Neuromyelitis Optica Spectrum Disorders

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    Autoantibodies against aquaporin-4 (AQP4), a water channel in CNS astrocytes, are detected in ∼50-80% of patients with neuromyelitis optica spectrum disorders (NMOsd), characterized by longitudinally extensive transverse myelitis (LETM) and/or optic neuritis. Although these autoantibodies present an invaluable biomarker for NMOsd and for the differential diagnosis of multiple sclerosis (MS), diagnosis of anti-AQP4-seronegative NMOsd remains challenging. We hypothesized that seronegative NMOsd patients might have autoantibodies against aquaporin-1 (AQP1), another water channel in CNS astrocytes. We initially developed a radioimmunoprecipitation assay to search for anti-AQP1 antibodies in sera from 632 individuals. Anti-AQP1 or anti-AQP4 autoantibodies were detected in 16.7% and 12%, respectively, of 348 patients with suspected NMOsd. Anti-AQP1 specificity was confirmed by competition, protein immunoblotting and ELISA assays, whereas epitope localization was studied by immunoadsorption on intact cells expressing AQP1 and peptide mapping experiments. Most anti-AQP1 autoantibodies were of the complement-activating IgG1 subclass and the majority bound to the extracellular domain of AQP1, suggesting a possible pathogenic role. Five out of 42 MS patients had anti-AQP1 antibodies, but 2 of them also had spinal cord lesions, while the anti-AQP1 antibodies in the other 3 bound to the cytoplasmic domain of AQP1. Anti-AQP1 antibodies were not detected in 100 healthy individuals or 142 patients with non-demyelinating neuroimmune diseases. Analysis of 17 anti-AQP1+/anti-AQP4- patients with suspected NMOsd showed that 5 had NMO and 11 had LETM. 12/17 of these sera bound predominantly to the extracellular AQP1 loop-Α. Overall, we found that anti-AQP1 autoantibodies are present in a subgroup of patients with chronic demyelination in the CNS and similarities with anti-AQP4-seronegative NMOsd, offering a novel potential biomarker for CNS demyelination disorders. © 2013 Tzartos et al

    Myasthenia gravis, atypical polyneuropathy and multiple autoimmune phenomena in the same patient, with HLA-immunogenetic profile expectable for Greek chronic inflammatory demyelinating polyneuropathy: a case report

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    Purpose: The comorbidity of myasthenia gravis (MG), with other autoimmune disorders like systemic lupus erythematosus (SLE), is relatively frequent but the co-occurrence with chronic inflammatory demyelinating polyneuropathy (CIDP) along with various autoimmune manifestations in the absence of thymoma is of extreme rarity. Our aim is to report a case of a woman who presented the concomitant appearance of MG, axonal sensory-motor polyneuropathy and hepatitis that may indicate an underlying pathogenetic link among the different autoimmune disorders. Materials and methods/results: We present a case of a 54-year-old woman, with a generalized MG and a chronic sensory-motor polyneuropathy, hypothyroidism, anaemia, hepatitis, livedo reticularis and facial flush, of assumed autoimmune background, like SLE, although with persistent negative ANA antibodies, from the beginning and through the whole following years. The Human Leukocyte Antigen (HLA)-DRB1 genotyping showed a profile of alleles (DRB1*11:01/11:04) compatible with CIDP of mainly female gender in Greece and frequencies close to those of Sjogren’s syndrome and scleroderma’s in the Greek population. The diagnostic problems, the atypical clinical, electrophysiological and immunological features are discussed, along with the rarity of the case, with this exceptional combination of autoimmune manifestations, which could be truly associated under the clinical umbrella of a systemic disease, like SLE. However, our patient did not ever fulfil the SLE criteria. Conclusions: To raise awareness among clinicians about the exceptional combination of autoimmune manifestations driven by a specific HLA background. © 2020 Informa UK Limited, trading as Taylor & Francis Group
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