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Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction

Understanding the distinct pathogenic mechanisms that culminate in allograft fibrosis and chronic graft failure is key in improving outcomes after solid organ transplantation. Here, we describe an F1 → parent orthotopic lung transplant model of restrictive allograft syndrome (RAS), a particularly fu...

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Autores principales: Misumi, Keizo, Wheeler, David S., Aoki, Yoshiro, Combs, Michael P., Braeuer, Russell R., Higashikubo, Ryuji, Li, Wenjun, Kreisel, Daniel, Vittal, Ragini, Myers, Jeffrey, Lagstein, Amir, Walker, Natalie M., Farver, Carol F., Lama, Vibha N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7714414/
https://www.ncbi.nlm.nih.gov/pubmed/33268593
http://dx.doi.org/10.1172/jci.insight.136533
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author Misumi, Keizo
Wheeler, David S.
Aoki, Yoshiro
Combs, Michael P.
Braeuer, Russell R.
Higashikubo, Ryuji
Li, Wenjun
Kreisel, Daniel
Vittal, Ragini
Myers, Jeffrey
Lagstein, Amir
Walker, Natalie M.
Farver, Carol F.
Lama, Vibha N.
author_facet Misumi, Keizo
Wheeler, David S.
Aoki, Yoshiro
Combs, Michael P.
Braeuer, Russell R.
Higashikubo, Ryuji
Li, Wenjun
Kreisel, Daniel
Vittal, Ragini
Myers, Jeffrey
Lagstein, Amir
Walker, Natalie M.
Farver, Carol F.
Lama, Vibha N.
author_sort Misumi, Keizo
collection PubMed
description Understanding the distinct pathogenic mechanisms that culminate in allograft fibrosis and chronic graft failure is key in improving outcomes after solid organ transplantation. Here, we describe an F1 → parent orthotopic lung transplant model of restrictive allograft syndrome (RAS), a particularly fulminant form of chronic lung allograft dysfunction (CLAD), and identify a requisite pathogenic role for humoral immune responses in development of RAS. B6D2F1/J (H2-b/d) donor lungs transplanted into the parent C57BL/6J (H2-b) recipients demonstrated a spectrum of histopathologic changes, ranging from lymphocytic infiltration, fibrinous exudates, and endothelialitis to peribronchial and pleuroparenchymal fibrosis, similar to those noted in the human RAS lungs. Gene expression profiling revealed differential humoral immune cell activation as a key feature of the RAS murine model, with significant B cell and plasma cell infiltration noted in the RAS lung allografts. B6D2F1/J lung allografts transplanted into μMt(–/–) (mature B cell deficient) or activation-induced cytidine deaminase (AID)/secretory μ-chain (μs) double-KO (AID(−/−)μs(−/−)) C57BL/6J mice demonstrated significantly decreased allograft fibrosis, indicating a key role for antibody secretion by B cells in mediating RAS pathology. Our study suggests that skewing of immune responses determines the diverse allograft remodeling patterns and highlights the need to develop targeted therapies for specific CLAD phenotypes.
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spelling pubmed-77144142020-12-08 Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction Misumi, Keizo Wheeler, David S. Aoki, Yoshiro Combs, Michael P. Braeuer, Russell R. Higashikubo, Ryuji Li, Wenjun Kreisel, Daniel Vittal, Ragini Myers, Jeffrey Lagstein, Amir Walker, Natalie M. Farver, Carol F. Lama, Vibha N. JCI Insight Research Article Understanding the distinct pathogenic mechanisms that culminate in allograft fibrosis and chronic graft failure is key in improving outcomes after solid organ transplantation. Here, we describe an F1 → parent orthotopic lung transplant model of restrictive allograft syndrome (RAS), a particularly fulminant form of chronic lung allograft dysfunction (CLAD), and identify a requisite pathogenic role for humoral immune responses in development of RAS. B6D2F1/J (H2-b/d) donor lungs transplanted into the parent C57BL/6J (H2-b) recipients demonstrated a spectrum of histopathologic changes, ranging from lymphocytic infiltration, fibrinous exudates, and endothelialitis to peribronchial and pleuroparenchymal fibrosis, similar to those noted in the human RAS lungs. Gene expression profiling revealed differential humoral immune cell activation as a key feature of the RAS murine model, with significant B cell and plasma cell infiltration noted in the RAS lung allografts. B6D2F1/J lung allografts transplanted into μMt(–/–) (mature B cell deficient) or activation-induced cytidine deaminase (AID)/secretory μ-chain (μs) double-KO (AID(−/−)μs(−/−)) C57BL/6J mice demonstrated significantly decreased allograft fibrosis, indicating a key role for antibody secretion by B cells in mediating RAS pathology. Our study suggests that skewing of immune responses determines the diverse allograft remodeling patterns and highlights the need to develop targeted therapies for specific CLAD phenotypes. American Society for Clinical Investigation 2020-12-03 /pmc/articles/PMC7714414/ /pubmed/33268593 http://dx.doi.org/10.1172/jci.insight.136533 Text en © 2020 Misumi et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Misumi, Keizo
Wheeler, David S.
Aoki, Yoshiro
Combs, Michael P.
Braeuer, Russell R.
Higashikubo, Ryuji
Li, Wenjun
Kreisel, Daniel
Vittal, Ragini
Myers, Jeffrey
Lagstein, Amir
Walker, Natalie M.
Farver, Carol F.
Lama, Vibha N.
Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title_full Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title_fullStr Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title_full_unstemmed Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title_short Humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
title_sort humoral immune responses mediate the development of a restrictive phenotype of chronic lung allograft dysfunction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7714414/
https://www.ncbi.nlm.nih.gov/pubmed/33268593
http://dx.doi.org/10.1172/jci.insight.136533
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