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May 25, 2026Nature Communications1 citationsOpen Access

Deep phenotyping of skin tissue remodeling in patients with systemic sclerosis treated with CD19-CAR T cells

ARAleix Rius RigauMXMeilin XuZLZiyuan Liu

Key Points

  • This research aims to investigate the effects of CD19-CAR T cell therapy on skin tissue remodeling in patients with systemic sclerosis.
  • Analyzed skin biopsy samples from systemic sclerosis patients treated with CD19-CAR T cells under the CASTLE study.
  • Utilized cyclic in situ hybridization and imaging mass cytometry for analysis.
  • Assessed histological changes, including the recovery of skin papillae and fibroblast populations.
  • Demonstrated structural regeneration of skin in systemic sclerosis patients post-treatment.
  • Fibroblast populations showed a shift towards a physiological state in composition and function.
  • Observed signs of vascular repair and improved epidermal cell function.

Abstract

Abstract Systemic sclerosis (SSc) is an autoimmune disease characterized by vasculopathy and fibrotic remodeling of the skin and internal organs. Fibrotic tissue changes are considered hardly reversible with current therapies, suggesting that new strategies are required to modulate the disease-associated molecular and cellular phenotype to enable regeneration of affected tissues. Here, analyzing skin biopsy samples from patients with SSc who had received CD19-CAR T cell therapy as part of the CASTLE study or named patient use, we demonstrate structural regeneration of SSc skin structure, as evidenced by recovery of skin papillae. Consistent with these histological changes, cyclic in situ hybridization and imaging mass cytometry analyses suggested that fibroblast populations shifted towards a physiological state, both in terms of composition and function. Moreover, we describe signs of vascular repair and changes in epidermal cell function. These results suggest that B cell depletion using CD19-CAR T cell therapy may lead to skin tissue remodeling in SSc and highlight its potential for tissue regeneration in fibrotic diseases.

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Cite This Study

Rigau et al. (2026) studied this question.

synapsesocial.com/papers/6a13e81d0e02ee3982d32d8bhttps://doi.org/10.1038/s41467-026-72817-7
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