A Human Skin Model Recapitulates Systemic Sclerosis Dermal Fibrosis and Identifies <em>COL22A1</em> as a TGFβ Early Response Gene that Mediates Fibroblast to Myofibroblast Transition

<b>: </b>Systemic sclerosis (SSc) is a complex multi-system autoimmune disease characterized by immune dysregulation, vasculopathy, and organ fibrosis. Skin fibrosis causes high morbidity and impaired quality of life in affected individuals. Animal models do not fully recapitulate the hu...

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Bibliographic Details
Main Authors: Tomoya Watanabe, DeAnna Baker Frost, Logan Mlakar, Jonathan Heywood, Willian A. da Silveira, Gary Hardiman, Carol Feghali-Bostwick
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Genes
Subjects:
TGF
Online Access:https://www.mdpi.com/2073-4425/10/2/75
Description
Summary:<b>: </b>Systemic sclerosis (SSc) is a complex multi-system autoimmune disease characterized by immune dysregulation, vasculopathy, and organ fibrosis. Skin fibrosis causes high morbidity and impaired quality of life in affected individuals. Animal models do not fully recapitulate the human disease. Thus, there is a critical need to identify ex vivo models for the dermal fibrosis characteristic of SSc. We identified genes regulated by the pro-fibrotic factor TGFβ in human skin maintained in organ culture. The molecular signature of human skin overlapped with that which was identified in SSc patient biopsies, suggesting that this model recapitulates the dermal fibrosis characteristic of the human disease. We further characterized the regulation and functional impact of a previously unreported gene in the setting of dermal fibrosis, <i>COL22A1</i>, and show that silencing <i>COL22A1</i> significantly reduced TGFβ-induced <i>ACTA2</i> expression. <i>COL22A1</i> expression was significantly increased in dermal fibroblasts from patients with SSc. In summary, we identified the molecular fingerprint of TGFβ in human skin and demonstrated that <i>COL22A1</i> is associated with the pathogenesis of fibrosis in SSc as an early response gene that may have important implications for fibroblast activation. Further, this model will provide a critical tool with direct relevance to human disease to facilitate the assessment of potential therapies for fibrosis.
ISSN:2073-4425