@article{JariusKleiterRuprechtetal.2016, author = {Jarius, Sven and Kleiter, Ingo and Ruprecht, Klemens and Asgari, Nasrin and Pitarokoili, Kalliopi and Borisow, Nadja and H{\"u}mmert, Martin W. and Trebst, Corinna and Pache, Florence and Winkelmann, Alexander and Beume, Lena-Alexandra and Ringelstein, Marius and Stich, Oliver and Aktas, Orhan and Korporal-Kuhnke, Mirjam and Schwarz, Alexander and Lukas, Carsten and Haas, J{\"u}rgen and Fechner, Kai and Buttmann, Mathias and Bellmann-Strobl, Judith and Zimmermann, Hanna and Brandt, Alexander U. and Franciotta, Diego and Schanda, Kathrin and Paul, Friedemann and Reindl, Markus and Wildemann, Brigitte}, title = {MOG-IgG in NMO and related disorders: a multicenter study of 50 patients. Part 3: Brainstem involvement - frequency, presentation and outcome}, series = {Journal of Neuroinflammation}, volume = {13}, journal = {Journal of Neuroinflammation}, number = {281}, doi = {10.1186/s12974-016-0719-z}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-165543}, pages = {1-23}, year = {2016}, abstract = {Background Myelin oligodendrocyte glycoprotein antibodies (MOG-IgG) are present in a subset of aquaporin-4 (AQP4)-IgG-negative patients with optic neuritis (ON) and/or myelitis. Little is known so far about brainstem involvement in MOG-IgG-positive patients. Objective To investigate the frequency, clinical and paraclinical features, course, outcome, and prognostic implications of brainstem involvement in MOG-IgG-positive ON and/or myelitis. Methods Retrospective case study. Results Among 50 patients with MOG-IgG-positive ON and/or myelitis, 15 (30 \%) with a history of brainstem encephalitis were identified. All were negative for AQP4-IgG. Symptoms included respiratory insufficiency, intractable nausea and vomiting (INV), dysarthria, dysphagia, impaired cough reflex, oculomotor nerve palsy and diplopia, nystagmus, internuclear ophthalmoplegia (INO), facial nerve paresis, trigeminal hypesthesia/dysesthesia, vertigo, hearing loss, balance difficulties, and gait and limb ataxia; brainstem involvement was asymptomatic in three cases. Brainstem inflammation was already present at or very shortly after disease onset in 7/15 (47 \%) patients. 16/21 (76.2 \%) brainstem attacks were accompanied by acute myelitis and/or ON. Lesions were located in the pons (11/13), medulla oblongata (8/14), mesencephalon (cerebral peduncles; 2/14), and cerebellar peduncles (5/14), were adjacent to the fourth ventricle in 2/12, and periaqueductal in 1/12; some had concomitant diencephalic (2/13) or cerebellar lesions (1/14). MRI or laboratory signs of blood-brain barrier damage were present in 5/12. Cerebrospinal fluid pleocytosis was found in 11/14 cases, with neutrophils in 7/11 (3-34 \% of all CSF white blood cells), and oligoclonal bands in 4/14. Attacks were preceded by acute infection or vaccination in 5/15 (33.3 \%). A history of teratoma was noted in one case. The disease followed a relapsing course in 13/15 (87 \%); the brainstem was involved more than once in 6. Immunosuppression was not always effective in preventing relapses. Interferon-beta was followed by new attacks in two patients. While one patient died from central hypoventilation, partial or complete recovery was achieved in the remainder following treatment with high-dose steroids and/or plasma exchange. Brainstem involvement was associated with a more aggressive general disease course (higher relapse rate, more myelitis attacks, more frequently supratentorial brain lesions, worse EDSS at last follow-up). Conclusions Brainstem involvement is present in around one third of MOG-IgG-positive patients with ON and/or myelitis. Clinical manifestations are diverse and may include symptoms typically seen in AQP4-IgG-positive neuromyelitis optica, such as INV and respiratory insufficiency, or in multiple sclerosis, such as INO. As MOG-IgG-positive brainstem encephalitis may take a serious or even fatal course, particular attention should be paid to signs or symptoms of additional brainstem involvement in patients presenting with MOG-IgG-positive ON and/or myelitis.}, language = {en} } @article{JariusRuprechtKleiteretal.2016, author = {Jarius, Sven and Ruprecht, Klemens and Kleiter, Ingo and Borisow, Nadja and Asgari, Nasrin and Pitarokoili, Kalliopi and Pache, Florence and Stich, Oliver and Beume, Lena-Alexandra and H{\"u}mmert, Martin W. and Ringelstein, Marius and Trebst, Corinna and Winkelmann, Alexander and Schwarz, Alexander and Buttmann, Mathias and Zimmermann, Hanna and Kuchling, Joseph and Franciotta, Diego and Capobianco, Marco and Siebert, Eberhard and Lukas, Carsten and Korporal-Kuhnke, Mirjam and Haas, J{\"u}rgen and Fechner, Kai and Brandt, Alexander U. and Schanda, Kathrin and Aktas, Orhan and Paul, Friedemann and Reindl, Markus and Wildemann, Brigitte}, title = {MOG-IgG in NMO and related disorders: a multicenter study of 50 patients. Part 2: Epidemiology, clinical presentation, radiological and laboratory features, treatment responses, and long-term outcome}, series = {Journal of Neuroinflammation}, volume = {13}, journal = {Journal of Neuroinflammation}, number = {280}, doi = {10.1186/s12974-016-0718-0}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-165570}, year = {2016}, abstract = {Background A subset of patients with neuromyelitis optica spectrum disorders (NMOSD) has been shown to be seropositive for myelin oligodendrocyte glycoprotein antibodies (MOG-IgG). Objective To describe the epidemiological, clinical, radiological, cerebrospinal fluid (CSF), and electrophysiological features of a large cohort of MOG-IgG-positive patients with optic neuritis (ON) and/or myelitis (n = 50) as well as attack and long-term treatment outcomes. Methods Retrospective multicenter study. Results The sex ratio was 1:2.8 (m:f). Median age at onset was 31 years (range 6-70). The disease followed a multiphasic course in 80\% (median time-to-first-relapse 5 months; annualized relapse rate 0.92) and resulted in significant disability in 40\% (mean follow-up 75 ± 46.5 months), with severe visual impairment or functional blindness (36\%) and markedly impaired ambulation due to paresis or ataxia (25\%) as the most common long-term sequelae. Functional blindness in one or both eyes was noted during at least one ON attack in around 70\%. Perioptic enhancement was present in several patients. Besides acute tetra-/paraparesis, dysesthesia and pain were common in acute myelitis (70\%). Longitudinally extensive spinal cord lesions were frequent, but short lesions occurred at least once in 44\%. Fourty-one percent had a history of simultaneous ON and myelitis. Clinical or radiological involvement of the brain, brainstem, or cerebellum was present in 50\%; extra-opticospinal symptoms included intractable nausea and vomiting and respiratory insufficiency (fatal in one). CSF pleocytosis (partly neutrophilic) was present in 70\%, oligoclonal bands in only 13\%, and blood-CSF-barrier dysfunction in 32\%. Intravenous methylprednisolone (IVMP) and long-term immunosuppression were often effective; however, treatment failure leading to rapid accumulation of disability was noted in many patients as well as flare-ups after steroid withdrawal. Full recovery was achieved by plasma exchange in some cases, including after IVMP failure. Breakthrough attacks under azathioprine were linked to the drug-specific latency period and a lack of cotreatment with oral steroids. Methotrexate was effective in 5/6 patients. Interferon-beta was associated with ongoing or increasing disease activity. Rituximab and ofatumumab were effective in some patients. However, treatment with rituximab was followed by early relapses in several cases; end-of-dose relapses occurred 9-12 months after the first infusion. Coexisting autoimmunity was rare (9\%). Wingerchuk's 2006 and 2015 criteria for NMO(SD) and Barkhof and McDonald criteria for multiple sclerosis (MS) were met by 28\%, 32\%, 15\%, 33\%, respectively; MS had been suspected in 36\%. Disease onset or relapses were preceded by infection, vaccination, or pregnancy/delivery in several cases. Conclusion Our findings from a predominantly Caucasian cohort strongly argue against the concept of MOG-IgG denoting a mild and usually monophasic variant of NMOSD. The predominantly relapsing and often severe disease course and the short median time to second attack support the use of prophylactic long-term treatments in patients with MOG-IgG-positive ON and/or myelitis.}, language = {en} } @article{JariusRuprechtKleiteretal.2016, author = {Jarius, Sven and Ruprecht, Klemens and Kleiter, Ingo and Borisow, Nadja and Asgari, Nasrin and Pitarokoili, Kalliopi and Pache, Florence and Stich, Oliver and Beume, Lena-Alexandra and H{\"u}mmert, Martin W. and Trebst, Corinna and Ringelstein, Marius and Aktas, Orhan and Winkelmann, Alexander and Buttmann, Mathias and Schwarz, Alexander and Zimmermann, Hanna and Brandt, Alexander U. and Franciotta, Diego and Capobianco, Marco and Kuchling, Joseph and Haas, J{\"u}rgen and Korporal-Kuhnke, Mirjam and Lillevang, Soeren Thue and Fechner, Kai and Schanda, Kathrin and Paul, Friedemann and Wildemann, Brigitte and Reindl, Markus}, title = {MOG-IgG in NMO and related disorders: a multicenter study of 50 patients. Part 1: Frequency, syndrome specificity, influence of disease activity, long-term course, association with AQP4-IgG, and origin}, series = {Journal of Neuroinflammation}, volume = {13}, journal = {Journal of Neuroinflammation}, number = {279}, doi = {10.1186/s12974-016-0717-1}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-165659}, pages = {1-16}, year = {2016}, abstract = {Background Antibodies to myelin oligodendrocyte glycoprotein (MOG-IgG) have been suggested to play a role in a subset of patients with neuromyelitis optica and related disorders. Objective To assess (i) the frequency of MOG-IgG in a large and predominantly Caucasian cohort of patients with optic neuritis (ON) and/or myelitis; (ii) the frequency of MOG-IgG among AQP4-IgG-positive patients and vice versa; (iii) the origin and frequency of MOG-IgG in the cerebrospinal fluid (CSF); (iv) the presence of MOG-IgG at disease onset; and (v) the influence of disease activity and treatment status on MOG-IgG titers. Methods 614 serum samples from patients with ON and/or myelitis and from controls, including 92 follow-up samples from 55 subjects, and 18 CSF samples were tested for MOG-IgG using a live cell-based assay (CBA) employing full-length human MOG-transfected HEK293A cells. Results MOG-IgG was detected in 95 sera from 50 patients with ON and/or myelitis, including 22/54 (40.7\%) patients with a history of both ON and myelitis, 22/103 (21.4\%) with a history of ON but no myelitis and 6/45 (13.3\%) with a history of longitudinally extensive transverse myelitis but no ON, and in 1 control patient with encephalitis and a connective tissue disorder, all of whom were negative for AQP4-IgG. MOG-IgG was absent in 221 further controls, including 83 patients with AQP4-IgG-seropositive neuromyelitis optica spectrum disorders and 85 with multiple sclerosis (MS). MOG-IgG was found in 12/18 (67\%) CSF samples from MOG-IgG-seropositive patients; the MOG-IgG-specific antibody index was negative in all cases, indicating a predominantly peripheral origin of CSF MOG-IgG. Serum and CSF MOG-IgG belonged to the complement-activating IgG1 subclass. MOG-IgG was present already at disease onset. The antibodies remained detectable in 40/45 (89\%) follow-up samples obtained over a median period of 16.5 months (range 0-123). Serum titers were higher during attacks than during remission (p < 0.0001), highest during attacks of simultaneous myelitis and ON, lowest during acute isolated ON, and declined following treatment. Conclusions To date, this is the largest cohort studied for IgG to human full-length MOG by means of an up-to-date CBA. MOG-IgG is present in a substantial subset of patients with ON and/or myelitis, but not in classical MS. Co-existence of MOG-IgG and AQP4-IgG is highly uncommon. CSF MOG-IgG is of extrathecal origin. Serum MOG-IgG is present already at disease onset and remains detectable in the long-term course. Serum titers depend on disease activity and treatment status.}, language = {en} } @article{HussHalbgebauerOeckletal.2016, author = {Huss, Andr{\´e} M. and Halbgebauer, Steffen and {\"O}ckl, Patrick and Trebst, Corinna and Spreer, Annette and Borisow, Nadja and Harrer, Andrea and Brecht, Isabel and Balint, Bettina and Stich, Oliver and Schlegel, Sabine and Retzlaff, Nele and Winkelmann, Alexander and Roesler, Romy and Lauda, Florian and Yildiz, {\"O}zlem and Voß, Elke and Muche, Rainer and Rauer, Sebastian and Bergh, Florian Then and Otto, Markus and Paul, Friedemann and Wildemann, Brigitte and Kraus, J{\"o}rg and Ruprecht, Klemens and Stangel, Martin and Buttmann, Mathias and Zettl, Uwe K. and Tumani, Hayrettin}, title = {Importance of cerebrospinal fluid analysis in the era of McDonald 2010 criteria: a German-Austrian retrospective multicenter study in patients with a clinically isolated syndrome}, series = {Journal of Neurology}, volume = {263}, journal = {Journal of Neurology}, number = {12}, doi = {10.1007/s00415-016-8302-1}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-186619}, pages = {2499-2504}, year = {2016}, abstract = {The majority of patients presenting with a first clinical symptom suggestive of multiple sclerosis (MS) do not fulfill the MRI criteria for dissemination in space and time according to the 2010 revision of the McDonald diagnostic criteria for MS and are thus classified as clinically isolated syndrome (CIS). To re-evaluate the utility of cerebrospinal fluid (CSF) analysis in the context of the revised McDonald criteria from 2010, we conducted a retrospective multicenter study aimed at determining the prevalence and predictive value of oligoclonal IgG bands (OCBs) in patients with CIS. Patients were recruited from ten specialized MS centers in Germany and Austria. We collected data from 406 patients; at disease onset, 44/406 (11 \%) fulfilled the McDonald 2010 criteria for MS. Intrathecal IgG OCBs were detected in 310/362 (86 \%) of CIS patients. Those patients were twice as likely to convert to MS according to McDonald 2010 criteria as OCB-negative individuals (hazard ratio = 2.1, p = 0.0014) and in a shorter time period of 25 months (95 \% CI 21-34) compared to 47 months in OCB-negative individuals (95 \% CI 36-85). In patients without brain lesions at first attack and presence of intrathecal OCBs (30/44), conversion rate to MS was 60 \% (18/30), whereas it was only 21 \% (3/14) in those without OCBs. Our data confirm that in patients with CIS the risk of conversion to MS substantially increases if OCBs are present at onset. CSF analysis definitely helps to evaluate the prognosis in patients who do not have MS according to the revised McDonald criteria.}, language = {en} }