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CD47 prevents the elimination of diseased fibroblasts in scleroderma

Scleroderma is a devastating fibrotic autoimmune disease. Current treatments are partly effective in preventing disease progression but do not remove fibrotic tissue. Here, we evaluated whether scleroderma fibroblasts take advantage of the “don’t-eat-me-signal” CD47 and whether blocking CD47 enables...

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Autores principales: Lerbs, Tristan, Cui, Lu, King, Megan E., Chai, Tim, Muscat, Claire, Chung, Lorinda, Brown, Ryanne, Rieger, Kerri, Shibata, Tyler, Wernig, Gerlinde
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/PMC7455137/
https://www.ncbi.nlm.nih.gov/pubmed/32814713
http://dx.doi.org/10.1172/jci.insight.140458
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author Lerbs, Tristan
Cui, Lu
King, Megan E.
Chai, Tim
Muscat, Claire
Chung, Lorinda
Brown, Ryanne
Rieger, Kerri
Shibata, Tyler
Wernig, Gerlinde
author_facet Lerbs, Tristan
Cui, Lu
King, Megan E.
Chai, Tim
Muscat, Claire
Chung, Lorinda
Brown, Ryanne
Rieger, Kerri
Shibata, Tyler
Wernig, Gerlinde
author_sort Lerbs, Tristan
collection PubMed
description Scleroderma is a devastating fibrotic autoimmune disease. Current treatments are partly effective in preventing disease progression but do not remove fibrotic tissue. Here, we evaluated whether scleroderma fibroblasts take advantage of the “don’t-eat-me-signal” CD47 and whether blocking CD47 enables the body’s immune system to get rid of diseased fibroblasts. To test this approach, we used a Jun-inducible scleroderma model. We first demonstrated in patient samples that scleroderma upregulated transcription factor JUN and increased promoter accessibilities of both JUN and CD47. Next, we established our scleroderma model, demonstrating that Jun mediated skin fibrosis through the hedgehog-dependent expansion of CD26(+)Sca1(–) fibroblasts in mice. In a niche-independent adaptive transfer model, JUN steered graft survival and conferred increased self-renewal to fibroblasts. In vivo, JUN enhanced the expression of CD47, and inhibiting CD47 eliminated an ectopic fibroblast graft and increased in vitro phagocytosis. In the syngeneic mouse, depleting macrophages ameliorated skin fibrosis. Therapeutically, combined CD47 and IL-6 blockade reversed skin fibrosis in mice and led to the rapid elimination of ectopically transplanted scleroderma cells. Altogether, our study demonstrates the efficiency of combining different immunotherapies in treating scleroderma and provides a rationale for combining CD47 and IL-6 inhibition in clinical trials.
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spelling pubmed-74551372020-09-01 CD47 prevents the elimination of diseased fibroblasts in scleroderma Lerbs, Tristan Cui, Lu King, Megan E. Chai, Tim Muscat, Claire Chung, Lorinda Brown, Ryanne Rieger, Kerri Shibata, Tyler Wernig, Gerlinde JCI Insight Research Article Scleroderma is a devastating fibrotic autoimmune disease. Current treatments are partly effective in preventing disease progression but do not remove fibrotic tissue. Here, we evaluated whether scleroderma fibroblasts take advantage of the “don’t-eat-me-signal” CD47 and whether blocking CD47 enables the body’s immune system to get rid of diseased fibroblasts. To test this approach, we used a Jun-inducible scleroderma model. We first demonstrated in patient samples that scleroderma upregulated transcription factor JUN and increased promoter accessibilities of both JUN and CD47. Next, we established our scleroderma model, demonstrating that Jun mediated skin fibrosis through the hedgehog-dependent expansion of CD26(+)Sca1(–) fibroblasts in mice. In a niche-independent adaptive transfer model, JUN steered graft survival and conferred increased self-renewal to fibroblasts. In vivo, JUN enhanced the expression of CD47, and inhibiting CD47 eliminated an ectopic fibroblast graft and increased in vitro phagocytosis. In the syngeneic mouse, depleting macrophages ameliorated skin fibrosis. Therapeutically, combined CD47 and IL-6 blockade reversed skin fibrosis in mice and led to the rapid elimination of ectopically transplanted scleroderma cells. Altogether, our study demonstrates the efficiency of combining different immunotherapies in treating scleroderma and provides a rationale for combining CD47 and IL-6 inhibition in clinical trials. American Society for Clinical Investigation 2020-08-20 /pmc/articles/PMC7455137/ /pubmed/32814713 http://dx.doi.org/10.1172/jci.insight.140458 Text en © 2020 Lerbs 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
Lerbs, Tristan
Cui, Lu
King, Megan E.
Chai, Tim
Muscat, Claire
Chung, Lorinda
Brown, Ryanne
Rieger, Kerri
Shibata, Tyler
Wernig, Gerlinde
CD47 prevents the elimination of diseased fibroblasts in scleroderma
title CD47 prevents the elimination of diseased fibroblasts in scleroderma
title_full CD47 prevents the elimination of diseased fibroblasts in scleroderma
title_fullStr CD47 prevents the elimination of diseased fibroblasts in scleroderma
title_full_unstemmed CD47 prevents the elimination of diseased fibroblasts in scleroderma
title_short CD47 prevents the elimination of diseased fibroblasts in scleroderma
title_sort cd47 prevents the elimination of diseased fibroblasts in scleroderma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455137/
https://www.ncbi.nlm.nih.gov/pubmed/32814713
http://dx.doi.org/10.1172/jci.insight.140458
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