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Published on: March 24, 2017
CD47 prevents the elimination of diseased fibroblasts in scleroderma
Tristan Lerbs1, Lu Cui1, Megan E King1
1Department of Pathology.
Abstract:
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.
Insights
Blocking CD47, a "don't-eat-me-signal," helps the immune system eliminate scleroderma fibroblasts. Combining CD47 and IL-6 blockade reversed skin fibrosis in mice, offering a new immunotherapy strategy.
Area of Science:
- Immunology
- Dermatology
- Fibrosis Research
Background:
- Scleroderma is a severe autoimmune fibrotic disease.
- Current treatments slow progression but don't clear fibrotic tissue.
- Fibroblasts play a key role in scleroderma pathogenesis.
Purpose of the Study:
- To investigate if scleroderma fibroblasts utilize the CD47 "don't-eat-me-signal".
- To determine if blocking CD47 can eliminate diseased fibroblasts via immune mechanisms.
- To explore combination immunotherapy for scleroderma.
Main Methods:
- Analysis of patient samples for JUN and CD47 expression.
- Development of a Jun-inducible mouse model for scleroderma.
- In vivo and in vitro experiments involving CD47 blockade, macrophage depletion, and IL-6 inhibition.
Main Results:
- Scleroderma upregulated JUN and CD47 in patient samples.
- Jun mediated skin fibrosis via hedgehog-dependent fibroblast expansion in mice.
- CD47 inhibition eliminated ectopic fibroblast grafts and enhanced phagocytosis.
- Combined CD47 and IL-6 blockade reversed skin fibrosis and cleared scleroderma cells.
Conclusions:
- Scleroderma fibroblasts exploit the CD47 "don't-eat-me-signal".
- Targeting CD47 enhances immune clearance of scleroderma fibroblasts.
- Combination therapy with CD47 and IL-6 blockade shows therapeutic potential for scleroderma.
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