Literature DB >> 32724223

The B cell immunobiology that underlies CNS autoantibody-mediated diseases.

Bo Sun1, Melanie Ramberger1, Kevin C O'Connor2, Rachael J M Bashford-Rogers3, Sarosh R Irani4.   

Abstract

A rapidly expanding and clinically distinct group of CNS diseases are caused by pathogenic autoantibodies that target neuroglial surface proteins. Despite immunotherapy, patients with these neuroglial surface autoantibody (NSAb)-mediated diseases often experience clinical relapse, high rates of long-term morbidity and adverse effects from the available medications. Fundamentally, the autoantigen-specific B cell lineage leads to production of the pathogenic autoantibodies. These autoantigen-specific B cells have been consistently identified in the circulation of patients with NSAb-mediated diseases, accompanied by high serum levels of autoantigen-specific antibodies. Early evidence suggests that these cells evade well-characterized B cell tolerance checkpoints. Nearer to the site of pathology, cerebrospinal fluid from patients with NSAb-mediated diseases contains high levels of autoantigen-specific B cells that are likely to account for the intrathecal synthesis of these autoantibodies. The characteristics of their immunoglobulin genes offer insights into the underlying immunobiology. In this Review, we summarize the emerging knowledge of B cells across the NSAb-mediated diseases. We review the evidence for the relative contributions of germinal centres and long-lived plasma cells as sources of autoantibodies, discuss data that indicate migration of B cells into the CNS and summarize insights into the underlying B cell pathogenesis that are provided by therapeutic effects.

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Year:  2020        PMID: 32724223      PMCID: PMC9364389          DOI: 10.1038/s41582-020-0381-z

Source DB:  PubMed          Journal:  Nat Rev Neurol        ISSN: 1759-4758            Impact factor:   44.711


  174 in total

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Journal:  Lancet Neurol       Date:  2013-01-03       Impact factor: 44.182

Review 2.  The establishment of early B cell tolerance in humans: lessons from primary immunodeficiency diseases.

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Authors:  Ziv Shulman; Alexander D Gitlin; Jason S Weinstein; Begoña Lainez; Enric Esplugues; Richard A Flavell; Joseph E Craft; Michel C Nussenzweig
Journal:  Science       Date:  2014-08-29       Impact factor: 47.728

5.  Rituximab levels in cerebrospinal fluid of patients with neurological autoimmune disorders.

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Journal:  Br J Haematol       Date:  2016-03-24       Impact factor: 6.998

7.  Tocilizumab in Autoimmune Encephalitis Refractory to Rituximab: An Institutional Cohort Study.

Authors:  Woo-Jin Lee; Soon-Tae Lee; Jangsup Moon; Jun-Sang Sunwoo; Jung-Ick Byun; Jung-Ah Lim; Tae-Joon Kim; Yong-Won Shin; Keon-Joo Lee; Jin-Sun Jun; Han Sang Lee; Soyun Kim; Kyung-Il Park; Keun-Hwa Jung; Ki-Young Jung; Manho Kim; Sang Kun Lee; Kon Chu
Journal:  Neurotherapeutics       Date:  2016-10       Impact factor: 7.620

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Authors:  Aude Chefdeville; Isabelle Treilleux; Marie-Eve Mayeur; Coline Couillault; Géraldine Picard; Chloé Bost; Karima Mokhtari; Alexandre Vasiljevic; David Meyronet; Véronique Rogemond; Dimitri Psimaras; Bertrand Dubois; Jérôme Honnorat; Virginie Desestret
Journal:  Acta Neuropathol Commun       Date:  2019-03-11       Impact factor: 7.801

Review 10.  Clinical and experimental studies of potentially pathogenic brain-directed autoantibodies: current knowledge and future directions.

Authors:  James Varley; Angela Vincent; Sarosh R Irani
Journal:  J Neurol       Date:  2014-12-10       Impact factor: 4.849

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Journal:  Proc Natl Acad Sci U S A       Date:  2022-06-06       Impact factor: 12.779

2.  Angiotensin type-1 receptor and ACE2 autoantibodies in Parkinson´s disease.

Authors:  Carmen M Labandeira; Maria A Pedrosa; Aloia Quijano; Rita Valenzuela; Pablo Garrido-Gil; Mariña Sanchez-Andrade; Juan A Suarez-Quintanilla; Ana I Rodriguez-Perez; Jose L Labandeira-Garcia
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3.  Individualized regimen of low-dose rituximab monotherapy for new-onset AChR-positive generalized myasthenia gravis.

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Journal:  J Neurol       Date:  2022-03-03       Impact factor: 6.682

Review 4.  Monoclonal Antibody Therapies Beyond Complement for NMOSD and MOGAD.

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Review 5.  Autoantibodies in neurological disease.

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Journal:  Nat Rev Immunol       Date:  2021-05-11       Impact factor: 53.106

Review 6.  Autoimmune Disorders of the Nervous System: Pathophysiology, Clinical Features, and Therapy.

Authors:  Satyakam Bhagavati
Journal:  Front Neurol       Date:  2021-04-14       Impact factor: 4.003

Review 7.  Peripheral neuroimmune interactions: selected review and some clinical implications.

Authors:  Kamal Shouman; Eduardo E Benarroch
Journal:  Clin Auton Res       Date:  2021-02-28       Impact factor: 4.435

8.  Research priorities for neuroimmunology: identifying the key research questions to be addressed by 2030.

Authors:  Georgina MacKenzie; Sumithra Subramaniam; Lindsey J Caldwell; Denise Fitzgerald; Neil A Harrison; Soyon Hong; Sarosh R Irani; Golam M Khandaker; Adrian Liston; Veronique E Miron; Valeria Mondelli; B Paul Morgan; Carmine Pariante; Divya K Shah; Leonie S Taams; Jessica L Teeling; Rachel Upthegrove
Journal:  Wellcome Open Res       Date:  2021-07-29

9.  A Comparison of IgG Index and Oligoclonal Band in the Cerebrospinal Fluid for Differentiating between RRMS and NMOSD.

Authors:  Bo Chen; Dai-Shi Tian; Bi-Tao Bu
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Review 10.  Autoimmune encephalitis: clinical spectrum and management.

Authors:  Christopher E Uy; Sophie Binks; Sarosh R Irani
Journal:  Pract Neurol       Date:  2021-06-09
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