Cargando…
Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer
Anti‐myelin‐associated glycoprotein (MAG) neuropathy is a disabling autoimmune peripheral neuropathy that is caused by circulating monoclonal IgM autoantibodies directed against the human natural killer‐1 (HNK‐1) epitope. This carbohydrate epitope is highly expressed on adhesion molecules such as MA...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7497077/ https://www.ncbi.nlm.nih.gov/pubmed/32270492 http://dx.doi.org/10.1111/jnc.15021 |
_version_ | 1783583239209746432 |
---|---|
author | Aliu, Butrint Demeestere, Delphine Seydoux, Emilie Boucraut, José Delmont, Emilien Brodovitch, Alexandre Oberholzer, Thomas Attarian, Shahram Théaudin, Marie Tsouni, Pinelopi Kuntzer, Thierry Derfuss, Tobias Steck, Andreas J. Ernst, Beat Herrendorff, Ruben Hänggi, Pascal |
author_facet | Aliu, Butrint Demeestere, Delphine Seydoux, Emilie Boucraut, José Delmont, Emilien Brodovitch, Alexandre Oberholzer, Thomas Attarian, Shahram Théaudin, Marie Tsouni, Pinelopi Kuntzer, Thierry Derfuss, Tobias Steck, Andreas J. Ernst, Beat Herrendorff, Ruben Hänggi, Pascal |
author_sort | Aliu, Butrint |
collection | PubMed |
description | Anti‐myelin‐associated glycoprotein (MAG) neuropathy is a disabling autoimmune peripheral neuropathy that is caused by circulating monoclonal IgM autoantibodies directed against the human natural killer‐1 (HNK‐1) epitope. This carbohydrate epitope is highly expressed on adhesion molecules such as MAG, a glycoprotein present in myelinated nerves. We previously showed the therapeutic potential of the glycopolymer poly(phenyl disodium 3‐O‐sulfo‐β‐d‐glucopyranuronate)‐(1→3)‐β‐d‐galactopyranoside (PPSGG) in selectively neutralizing anti‐MAG IgM antibodies in an immunological mouse model and ex vivo with sera from anti‐MAG neuropathy patients. PPSGG is composed of a biodegradable backbone that multivalently presents a mimetic of the HNK‐1 epitope. In this study, we further explored the pharmacodynamic properties of the glycopolymer and its ability to inhibit the binding of anti‐MAG IgM to peripheral nerves. The polymer selectively bound anti‐MAG IgM autoantibodies and prevented the binding of patients’ anti‐MAG IgM antibodies to myelin of non‐human primate sciatic nerves. Upon PPSGG treatment, neither activation nor inhibition of human and murine peripheral blood mononuclear cells nor alteration of systemic inflammatory markers was observed in mice or ex vivo in human peripheral blood mononuclear cells. Intravenous injections of PPSGG to mice immunized against the HNK‐1 epitope removed anti‐MAG IgM antibodies within less than 1 hr, indicating a fast and efficient mechanism of action as compared to a B‐cell depletion with anti‐CD20. In conclusion, these observations corroborate the therapeutic potential of PPSGG for an antigen‐specific treatment of anti‐MAG neuropathy. [Image: see text] Read the Editorial Highlight for this article on page 465. |
format | Online Article Text |
id | pubmed-7497077 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-74970772020-09-25 Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer Aliu, Butrint Demeestere, Delphine Seydoux, Emilie Boucraut, José Delmont, Emilien Brodovitch, Alexandre Oberholzer, Thomas Attarian, Shahram Théaudin, Marie Tsouni, Pinelopi Kuntzer, Thierry Derfuss, Tobias Steck, Andreas J. Ernst, Beat Herrendorff, Ruben Hänggi, Pascal J Neurochem HIGHLIGHTED ARTICLE Anti‐myelin‐associated glycoprotein (MAG) neuropathy is a disabling autoimmune peripheral neuropathy that is caused by circulating monoclonal IgM autoantibodies directed against the human natural killer‐1 (HNK‐1) epitope. This carbohydrate epitope is highly expressed on adhesion molecules such as MAG, a glycoprotein present in myelinated nerves. We previously showed the therapeutic potential of the glycopolymer poly(phenyl disodium 3‐O‐sulfo‐β‐d‐glucopyranuronate)‐(1→3)‐β‐d‐galactopyranoside (PPSGG) in selectively neutralizing anti‐MAG IgM antibodies in an immunological mouse model and ex vivo with sera from anti‐MAG neuropathy patients. PPSGG is composed of a biodegradable backbone that multivalently presents a mimetic of the HNK‐1 epitope. In this study, we further explored the pharmacodynamic properties of the glycopolymer and its ability to inhibit the binding of anti‐MAG IgM to peripheral nerves. The polymer selectively bound anti‐MAG IgM autoantibodies and prevented the binding of patients’ anti‐MAG IgM antibodies to myelin of non‐human primate sciatic nerves. Upon PPSGG treatment, neither activation nor inhibition of human and murine peripheral blood mononuclear cells nor alteration of systemic inflammatory markers was observed in mice or ex vivo in human peripheral blood mononuclear cells. Intravenous injections of PPSGG to mice immunized against the HNK‐1 epitope removed anti‐MAG IgM antibodies within less than 1 hr, indicating a fast and efficient mechanism of action as compared to a B‐cell depletion with anti‐CD20. In conclusion, these observations corroborate the therapeutic potential of PPSGG for an antigen‐specific treatment of anti‐MAG neuropathy. [Image: see text] Read the Editorial Highlight for this article on page 465. John Wiley and Sons Inc. 2020-06-23 2020-09 /pmc/articles/PMC7497077/ /pubmed/32270492 http://dx.doi.org/10.1111/jnc.15021 Text en © 2020 The Authors. Journal of Neurochemistry published by John Wiley & Sons Ltd on behalf of International Society for Neurochemistry This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes. |
spellingShingle | HIGHLIGHTED ARTICLE Aliu, Butrint Demeestere, Delphine Seydoux, Emilie Boucraut, José Delmont, Emilien Brodovitch, Alexandre Oberholzer, Thomas Attarian, Shahram Théaudin, Marie Tsouni, Pinelopi Kuntzer, Thierry Derfuss, Tobias Steck, Andreas J. Ernst, Beat Herrendorff, Ruben Hänggi, Pascal Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title | Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title_full | Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title_fullStr | Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title_full_unstemmed | Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title_short | Selective inhibition of anti‐MAG IgM autoantibody binding to myelin by an antigen‐specific glycopolymer |
title_sort | selective inhibition of anti‐mag igm autoantibody binding to myelin by an antigen‐specific glycopolymer |
topic | HIGHLIGHTED ARTICLE |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7497077/ https://www.ncbi.nlm.nih.gov/pubmed/32270492 http://dx.doi.org/10.1111/jnc.15021 |
work_keys_str_mv | AT aliubutrint selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT demeesteredelphine selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT seydouxemilie selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT boucrautjose selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT delmontemilien selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT brodovitchalexandre selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT oberholzerthomas selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT attarianshahram selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT theaudinmarie selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT tsounipinelopi selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT kuntzerthierry selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT derfusstobias selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT steckandreasj selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT ernstbeat selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT herrendorffruben selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer AT hanggipascal selectiveinhibitionofantimagigmautoantibodybindingtomyelinbyanantigenspecificglycopolymer |