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Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2

Bullous pemphigoid (BP), the most frequent autoimmune bullous disorder, is a paradigmatic autoantibody-mediated disease associated with autoantibodies against BP180 (type XVII collagen, Col17). Several animal models have been developed that reflect important clinical and immunological features of hu...

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Autores principales: Karsten, Christian M., Beckmann, Tina, Holtsche, Maike M., Tillmann, Jenny, Tofern, Sabrina, Schulze, Franziska S., Heppe, Eva Nina, Ludwig, Ralf J., Zillikens, Detlef, König, Inke R., Köhl, Jörg, Schmidt, Enno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862877/
https://www.ncbi.nlm.nih.gov/pubmed/29599777
http://dx.doi.org/10.3389/fimmu.2018.00488
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author Karsten, Christian M.
Beckmann, Tina
Holtsche, Maike M.
Tillmann, Jenny
Tofern, Sabrina
Schulze, Franziska S.
Heppe, Eva Nina
Ludwig, Ralf J.
Zillikens, Detlef
König, Inke R.
Köhl, Jörg
Schmidt, Enno
author_facet Karsten, Christian M.
Beckmann, Tina
Holtsche, Maike M.
Tillmann, Jenny
Tofern, Sabrina
Schulze, Franziska S.
Heppe, Eva Nina
Ludwig, Ralf J.
Zillikens, Detlef
König, Inke R.
Köhl, Jörg
Schmidt, Enno
author_sort Karsten, Christian M.
collection PubMed
description Bullous pemphigoid (BP), the most frequent autoimmune bullous disorder, is a paradigmatic autoantibody-mediated disease associated with autoantibodies against BP180 (type XVII collagen, Col17). Several animal models have been developed that reflect important clinical and immunological features of human BP. Complement activation has been described as a prerequisite for blister formation, however, the recent finding that skin lesions can be induced by anti-Col17 F(ab′)(2) fragments indicates complement-independent mechanisms to contribute to blister formation in BP. Here, C5(−/−) mice injected with anti-Col17 IgG showed a reduction of skin lesions by about 50% associated with significantly less skin-infiltrating neutrophils compared to wild-type mice. Reduction of skin lesions and neutrophil infiltration was seen independently of the employed anti-Col17 IgG dose. Further, C5ar1(−/−) mice were protected from disease development, whereas the extent of skin lesions was increased in C5ar2(−/−) animals. Pharmacological inhibition of C5a receptor 1 (C5aR1) by PMX53 led to reduced disease activity when applied in a prophylactic setting. In contrast, PMX-53 treatment had no effect when first skin lesions had already developed. While C5aR1 was critically involved in neutrophil migration in vitro, its role for Col17-anti-Col17 IgG immune complex-mediated release of reactive oxygen species from neutrophils was less pronounced. Our data demonstrate that complement-dependent and -independent mechanisms coexist in anti-Col17-autoantibody-mediated tissue destruction. C5aR1 and C5aR2 seem to play opposing roles in this process with C5aR1 exerting its primary effect in recruiting inflammatory cells to the skin during the early phase of the disease. Further studies are required to fully understand the role of C5aR2 in autoantibody-mediated skin inflammation.
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spelling pubmed-58628772018-03-29 Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2 Karsten, Christian M. Beckmann, Tina Holtsche, Maike M. Tillmann, Jenny Tofern, Sabrina Schulze, Franziska S. Heppe, Eva Nina Ludwig, Ralf J. Zillikens, Detlef König, Inke R. Köhl, Jörg Schmidt, Enno Front Immunol Immunology Bullous pemphigoid (BP), the most frequent autoimmune bullous disorder, is a paradigmatic autoantibody-mediated disease associated with autoantibodies against BP180 (type XVII collagen, Col17). Several animal models have been developed that reflect important clinical and immunological features of human BP. Complement activation has been described as a prerequisite for blister formation, however, the recent finding that skin lesions can be induced by anti-Col17 F(ab′)(2) fragments indicates complement-independent mechanisms to contribute to blister formation in BP. Here, C5(−/−) mice injected with anti-Col17 IgG showed a reduction of skin lesions by about 50% associated with significantly less skin-infiltrating neutrophils compared to wild-type mice. Reduction of skin lesions and neutrophil infiltration was seen independently of the employed anti-Col17 IgG dose. Further, C5ar1(−/−) mice were protected from disease development, whereas the extent of skin lesions was increased in C5ar2(−/−) animals. Pharmacological inhibition of C5a receptor 1 (C5aR1) by PMX53 led to reduced disease activity when applied in a prophylactic setting. In contrast, PMX-53 treatment had no effect when first skin lesions had already developed. While C5aR1 was critically involved in neutrophil migration in vitro, its role for Col17-anti-Col17 IgG immune complex-mediated release of reactive oxygen species from neutrophils was less pronounced. Our data demonstrate that complement-dependent and -independent mechanisms coexist in anti-Col17-autoantibody-mediated tissue destruction. C5aR1 and C5aR2 seem to play opposing roles in this process with C5aR1 exerting its primary effect in recruiting inflammatory cells to the skin during the early phase of the disease. Further studies are required to fully understand the role of C5aR2 in autoantibody-mediated skin inflammation. Frontiers Media S.A. 2018-03-15 /pmc/articles/PMC5862877/ /pubmed/29599777 http://dx.doi.org/10.3389/fimmu.2018.00488 Text en Copyright © 2018 Karsten, Beckmann, Holtsche, Tillmann, Tofern, Schulze, Heppe, Ludwig, Zillikens, König, Köhl and Schmidt. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Karsten, Christian M.
Beckmann, Tina
Holtsche, Maike M.
Tillmann, Jenny
Tofern, Sabrina
Schulze, Franziska S.
Heppe, Eva Nina
Ludwig, Ralf J.
Zillikens, Detlef
König, Inke R.
Köhl, Jörg
Schmidt, Enno
Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title_full Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title_fullStr Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title_full_unstemmed Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title_short Tissue Destruction in Bullous Pemphigoid Can Be Complement Independent and May Be Mitigated by C5aR2
title_sort tissue destruction in bullous pemphigoid can be complement independent and may be mitigated by c5ar2
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5862877/
https://www.ncbi.nlm.nih.gov/pubmed/29599777
http://dx.doi.org/10.3389/fimmu.2018.00488
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