Cargando…

NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody

OBJECTIVE: Autoimmune encephalitis is most frequently associated with anti‐NMDAR autoantibodies. Their pathogenic relevance has been suggested by passive transfer of patients' cerebrospinal fluid (CSF) in mice in vivo. We aimed to analyze the intrathecal plasma cell repertoire, identify autoant...

Descripción completa

Detalles Bibliográficos
Autores principales: Malviya, Manish, Barman, Sumanta, Golombeck, Kristin S., Planagumà, Jesús, Mannara, Francesco, Strutz‐Seebohm, Nathalie, Wrzos, Claudia, Demir, Fatih, Baksmeier, Christine, Steckel, Julia, Falk, Kim Kristin, Gross, Catharina C., Kovac, Stjepana, Bönte, Kathrin, Johnen, Andreas, Wandinger, Klaus‐Peter, Martín‐García, Elena, Becker, Albert J., Elger, Christian E., Klöcker, Nikolaj, Wiendl, Heinz, Meuth, Sven G., Hartung, Hans‐Peter, Seebohm, Guiscard, Leypoldt, Frank, Maldonado, Rafael, Stadelmann, Christine, Dalmau, Josep, Melzer, Nico, Goebels, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5682115/
https://www.ncbi.nlm.nih.gov/pubmed/29159189
http://dx.doi.org/10.1002/acn3.444
_version_ 1783278045278240768
author Malviya, Manish
Barman, Sumanta
Golombeck, Kristin S.
Planagumà, Jesús
Mannara, Francesco
Strutz‐Seebohm, Nathalie
Wrzos, Claudia
Demir, Fatih
Baksmeier, Christine
Steckel, Julia
Falk, Kim Kristin
Gross, Catharina C.
Kovac, Stjepana
Bönte, Kathrin
Johnen, Andreas
Wandinger, Klaus‐Peter
Martín‐García, Elena
Becker, Albert J.
Elger, Christian E.
Klöcker, Nikolaj
Wiendl, Heinz
Meuth, Sven G.
Hartung, Hans‐Peter
Seebohm, Guiscard
Leypoldt, Frank
Maldonado, Rafael
Stadelmann, Christine
Dalmau, Josep
Melzer, Nico
Goebels, Norbert
author_facet Malviya, Manish
Barman, Sumanta
Golombeck, Kristin S.
Planagumà, Jesús
Mannara, Francesco
Strutz‐Seebohm, Nathalie
Wrzos, Claudia
Demir, Fatih
Baksmeier, Christine
Steckel, Julia
Falk, Kim Kristin
Gross, Catharina C.
Kovac, Stjepana
Bönte, Kathrin
Johnen, Andreas
Wandinger, Klaus‐Peter
Martín‐García, Elena
Becker, Albert J.
Elger, Christian E.
Klöcker, Nikolaj
Wiendl, Heinz
Meuth, Sven G.
Hartung, Hans‐Peter
Seebohm, Guiscard
Leypoldt, Frank
Maldonado, Rafael
Stadelmann, Christine
Dalmau, Josep
Melzer, Nico
Goebels, Norbert
author_sort Malviya, Manish
collection PubMed
description OBJECTIVE: Autoimmune encephalitis is most frequently associated with anti‐NMDAR autoantibodies. Their pathogenic relevance has been suggested by passive transfer of patients' cerebrospinal fluid (CSF) in mice in vivo. We aimed to analyze the intrathecal plasma cell repertoire, identify autoantibody‐producing clones, and characterize their antibody signatures in recombinant form. METHODS: Patients with recent onset typical anti‐NMDAR encephalitis were subjected to flow cytometry analysis of the peripheral and intrathecal immune response before, during, and after immunotherapy. Recombinant human monoclonal antibodies (rhuMab) were cloned and expressed from matching immunoglobulin heavy‐ (IgH) and light‐chain (IgL) amplicons of clonally expanded intrathecal plasma cells (cePc) and tested for their pathogenic relevance. RESULTS: Intrathecal accumulation of B and plasma cells corresponded to the clinical course. The presence of cePc with hypermutated antigen receptors indicated an antigen‐driven intrathecal immune response. Consistently, a single recombinant human GluN1‐specific monoclonal antibody, rebuilt from intrathecal cePc, was sufficient to reproduce NMDAR epitope specificity in vitro. After intraventricular infusion in mice, it accumulated in the hippocampus, decreased synaptic NMDAR density, and caused severe reversible memory impairment, a key pathogenic feature of the human disease, in vivo. INTERPRETATION: A CNS‐specific humoral immune response is present in anti‐NMDAR encephalitis specifically targeting the GluN1 subunit of the NMDAR. Using reverse genetics, we recovered the typical intrathecal antibody signature in recombinant form, and proved its pathogenic relevance by passive transfer of disease symptoms from man to mouse, providing the critical link between intrathecal immune response and the pathogenesis of anti‐NMDAR encephalitis as a humorally mediated autoimmune disease.
format Online
Article
Text
id pubmed-5682115
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-56821152017-11-20 NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody Malviya, Manish Barman, Sumanta Golombeck, Kristin S. Planagumà, Jesús Mannara, Francesco Strutz‐Seebohm, Nathalie Wrzos, Claudia Demir, Fatih Baksmeier, Christine Steckel, Julia Falk, Kim Kristin Gross, Catharina C. Kovac, Stjepana Bönte, Kathrin Johnen, Andreas Wandinger, Klaus‐Peter Martín‐García, Elena Becker, Albert J. Elger, Christian E. Klöcker, Nikolaj Wiendl, Heinz Meuth, Sven G. Hartung, Hans‐Peter Seebohm, Guiscard Leypoldt, Frank Maldonado, Rafael Stadelmann, Christine Dalmau, Josep Melzer, Nico Goebels, Norbert Ann Clin Transl Neurol Research Articles OBJECTIVE: Autoimmune encephalitis is most frequently associated with anti‐NMDAR autoantibodies. Their pathogenic relevance has been suggested by passive transfer of patients' cerebrospinal fluid (CSF) in mice in vivo. We aimed to analyze the intrathecal plasma cell repertoire, identify autoantibody‐producing clones, and characterize their antibody signatures in recombinant form. METHODS: Patients with recent onset typical anti‐NMDAR encephalitis were subjected to flow cytometry analysis of the peripheral and intrathecal immune response before, during, and after immunotherapy. Recombinant human monoclonal antibodies (rhuMab) were cloned and expressed from matching immunoglobulin heavy‐ (IgH) and light‐chain (IgL) amplicons of clonally expanded intrathecal plasma cells (cePc) and tested for their pathogenic relevance. RESULTS: Intrathecal accumulation of B and plasma cells corresponded to the clinical course. The presence of cePc with hypermutated antigen receptors indicated an antigen‐driven intrathecal immune response. Consistently, a single recombinant human GluN1‐specific monoclonal antibody, rebuilt from intrathecal cePc, was sufficient to reproduce NMDAR epitope specificity in vitro. After intraventricular infusion in mice, it accumulated in the hippocampus, decreased synaptic NMDAR density, and caused severe reversible memory impairment, a key pathogenic feature of the human disease, in vivo. INTERPRETATION: A CNS‐specific humoral immune response is present in anti‐NMDAR encephalitis specifically targeting the GluN1 subunit of the NMDAR. Using reverse genetics, we recovered the typical intrathecal antibody signature in recombinant form, and proved its pathogenic relevance by passive transfer of disease symptoms from man to mouse, providing the critical link between intrathecal immune response and the pathogenesis of anti‐NMDAR encephalitis as a humorally mediated autoimmune disease. John Wiley and Sons Inc. 2017-10-03 /pmc/articles/PMC5682115/ /pubmed/29159189 http://dx.doi.org/10.1002/acn3.444 Text en © 2017 The Authors. Annals of Clinical and Translational Neurology published by Wiley Periodicals, Inc on behalf of American Neurological Association. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Malviya, Manish
Barman, Sumanta
Golombeck, Kristin S.
Planagumà, Jesús
Mannara, Francesco
Strutz‐Seebohm, Nathalie
Wrzos, Claudia
Demir, Fatih
Baksmeier, Christine
Steckel, Julia
Falk, Kim Kristin
Gross, Catharina C.
Kovac, Stjepana
Bönte, Kathrin
Johnen, Andreas
Wandinger, Klaus‐Peter
Martín‐García, Elena
Becker, Albert J.
Elger, Christian E.
Klöcker, Nikolaj
Wiendl, Heinz
Meuth, Sven G.
Hartung, Hans‐Peter
Seebohm, Guiscard
Leypoldt, Frank
Maldonado, Rafael
Stadelmann, Christine
Dalmau, Josep
Melzer, Nico
Goebels, Norbert
NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title_full NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title_fullStr NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title_full_unstemmed NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title_short NMDAR encephalitis: passive transfer from man to mouse by a recombinant antibody
title_sort nmdar encephalitis: passive transfer from man to mouse by a recombinant antibody
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5682115/
https://www.ncbi.nlm.nih.gov/pubmed/29159189
http://dx.doi.org/10.1002/acn3.444
work_keys_str_mv AT malviyamanish nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT barmansumanta nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT golombeckkristins nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT planagumajesus nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT mannarafrancesco nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT strutzseebohmnathalie nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT wrzosclaudia nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT demirfatih nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT baksmeierchristine nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT steckeljulia nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT falkkimkristin nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT grosscatharinac nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT kovacstjepana nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT bontekathrin nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT johnenandreas nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT wandingerklauspeter nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT martingarciaelena nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT beckeralbertj nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT elgerchristiane nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT klockernikolaj nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT wiendlheinz nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT meuthsveng nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT hartunghanspeter nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT seebohmguiscard nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT leypoldtfrank nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT maldonadorafael nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT stadelmannchristine nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT dalmaujosep nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT melzernico nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody
AT goebelsnorbert nmdarencephalitispassivetransferfrommantomousebyarecombinantantibody