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Local CXCR4 Upregulation in the Injured Arterial Wall Contributes to Intimal Hyperplasia.
Shi, Xudong; Guo, Lian-Wang; Seedial, Stephen; Takayama, Toshio; Wang, Bowen; Zhang, Mengxue; Franco, Sarah R; Si, Yi; Chaudhary, Mirnal A; Liu, Bo; Kent, K Craig.
Afiliação
  • Shi X; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Guo LW; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Seedial S; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Takayama T; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Wang B; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Zhang M; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Franco SR; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Si Y; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Chaudhary MA; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Liu B; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
  • Kent KC; Department of Surgery, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin, USA.
Stem Cells ; 34(11): 2744-2757, 2016 11.
Article em En | MEDLINE | ID: mdl-27340942
CXCR4 is a stem/progenitor cell surface receptor specific for the cytokine stromal cell-derived factor-1 (SDF-1α). There is evidence that bone marrow-derived CXCR4-expressing cells contribute to intimal hyperplasia (IH) by homing to the arterial subintima which is enriched with SDF-1α. We have previously found that transforming growth factor-ß (TGFß) and its signaling protein Smad3 are both upregulated following arterial injury and that TGFß/Smad3 enhances the expression of CXCR4 in vascular smooth muscle cells (SMCs). It remains unknown, however, whether locally induced CXCR4 expression in SM22 expressing vascular SMCs plays a role in neointima formation. Here, we investigated whether elevated TGFß/Smad3 signaling leads to the induction of CXCR4 expression locally in the injured arterial wall, thereby contributing to IH. We found prominent CXCR4 upregulation (mRNA, 60-fold; protein, 4-fold) in TGFß-treated, Smad3-expressing SMCs. Chromatin immunoprecipitation assays revealed a specific association of the transcription factor Smad3 with the CXCR4 promoter. TGFß/Smad3 treatment also markedly enhanced SDF-1α-induced ERK1/2 phosphorylation as well as SMC migration in a CXCR4-dependent manner. Adenoviral expression of Smad3 in balloon-injured rat carotid arteries increased local CXCR4 levels and enhanced IH, whereas SMC-specific depletion of CXCR4 in the wire-injured mouse femoral arterial wall produced a 60% reduction in IH. Our results provide the first evidence that upregulation of TGFß/Smad3 in injured arteries induces local SMC CXCR4 expression and cell migration, and consequently IH. The Smad3/CXCR4 pathway may provide a potential target for therapeutic interventions to prevent restenosis. Stem Cells 2016;34:2744-2757.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fator de Crescimento Transformador beta / Túnica Íntima / Receptores CXCR4 / Lesões das Artérias Carótidas / Proteína Smad3 / Neointima Idioma: En Revista: Stem Cells Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fator de Crescimento Transformador beta / Túnica Íntima / Receptores CXCR4 / Lesões das Artérias Carótidas / Proteína Smad3 / Neointima Idioma: En Revista: Stem Cells Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Estados Unidos