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   Human antibodies against the myelin oligodendrocyte glycoprotein can cause complement-dependent demyelination  
   
نویسنده peschl p. ,schanda k. ,zeka b. ,given k. ,böhm d. ,ruprecht k. ,saiz a. ,lutterotti a. ,rostásy k. ,höftberger r. ,berger t. ,macklin w. ,lassmann h. ,bradl m. ,bennett j.l. ,reindl m.
منبع journal of neuroinflammation - 2017 - دوره : 14 - شماره : 1
چکیده    Background: antibodies to the myelin oligodendrocyte glycoprotein (mog) are associated with a subset of inflammatory demyelinating diseases of the central nervous system such as acute disseminated encephalomyelitis and neuromyelitis optica spectrum disorders. however,whether human mog antibodies are pathogenic or an epiphenomenon is still not completely clear. although mog is highly conserved within mammals,previous findings showed that not all human mog antibodies bind to rodent mog. we therefore hypothesized that human mog antibody-mediated pathology in animal models may only be evident using species-specific mog antibodies. methods: we screened 80 human mog antibody-positive samples for their reactivity to mouse and rat mog using either a live cell-based assay or immunohistochemistry on murine,rat,and human brain tissue. selected samples reactive to either human mog or rodent mog were subsequently tested for their ability to induce complement-mediated damage in murine organotypic brain slices or enhance demyelination in an experimental autoimmune encephalitis (eae) model in lewis rats. the mog monoclonal antibody 8-18-c5 was used as a positive control. results: overall,we found that only a subset of human mog antibodies are reactive to mouse (48/80,60%) or rat (14/80,18%) mog. purified serum antibodies from 10 human mog antibody-positive patients (8/10 reactive to mouse mog,6/10 reactive to rat mog),3 human mog-negative patients,and 3 healthy controls were tested on murine organotypic brain slices. purified igg from one patient with high titers of anti-human,mouse,and rat mog antibodies and robust binding to myelin tissue produced significant,complement-mediated myelin loss in organotypic brain slices,but not in the eae model. monoclonal 8-18-c5 mog antibody caused complement-mediated demyelination in both the organotypic brain slice model and in eae. conclusion: this study shows that a subset of human mog antibodies can induce complement-dependent pathogenic effects in a murine ex vivo animal model. moreover,a high titer of species-specific mog antibodies may be critical for demyelinating effects in mouse and rat animal models. therefore,both the reactivity and titer of human mog antibodies must be considered for future pathogenicity studies. © 2017 the author(s).
کلیدواژه Antibodies; EAE; MOG; Myelin oligodendrocyte glycoprotein; Neuromyelitis optica spectrum disorders; Organotypic slice culture
آدرس medical university of innsbruck,clinical department of neurology,innsbruck, Austria, medical university of innsbruck,clinical department of neurology,innsbruck, Austria, medical university vienna,department of neuroimmunology,center for brain research,vienna, Austria, university of colorado school of medicine,department of cell and developmental biology,aurora,co, United States, medical university vienna,department of neuroimmunology,center for brain research,vienna, Austria, charité-universitätsmedizin berlin,department of neurology,berlin, Germany, institut d'investigacions biomédiques august pi i sunyer (idibaps) university of barcelona,service of neurology,department of neurology,hospital clinic,barcelona, Spain, university hospital zurich and university of zurich,neuroimmunology and multiple sclerosis research,department of neurology,zurich, Switzerland, witten/herdecke university,children's hospital datteln,department of pediatric neurology,datteln, Germany, medical university of vienna,institute of neurology,vienna, Austria, medical university of innsbruck,clinical department of neurology,innsbruck, Austria, university of colorado school of medicine,department of cell and developmental biology,aurora,co, United States, medical university vienna,department of neuroimmunology,center for brain research,vienna, Austria, medical university vienna,department of neuroimmunology,center for brain research,vienna, Austria, university of colorado,departments of neurology and ophthalmology,program in neuroscience,school of medicine,aurora,co, United States, medical university of innsbruck,clinical department of neurology,innsbruck, Austria
 
     
   
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