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Transgenic Modeling of Transforming Growth Factor-β1: Role of Apoptosis in Fibrosis and Alveolar Remodeling

Lee C, Kang H, Homer R +2 more2006Proceedings of the American Thoracic SocietyReview
10.1513/pats.200602-017awPubMedFree full text
Immune/InnateRespiratory/Sinus

Abstract

Abstract Inflammation and tissue remodeling with pathologic fibrosis are common consequences of Th2 responses in the lung and other organs. Interleukin (IL)-13 and transforming growth factor-β1 (TGF-β1) are frequently coexpressed in these responses and are believed to play important roles in the pathogenesis of Th2-induced pathologies. To shed light on the mechanisms of these responses, overexpression transgenic approaches were used to selectively target each of these cytokines to the murine lung. IL-13 proved to be a potent stimulator of eosinophilic inflammation, mucus metaplasia, tissue fibrosis, and alveolar remodeling. CC chemokines, specific chemokine receptors (CCR2, CCR1), adenosine metabolism, vascular endothelial growth factor, and IL-11 contributed to the genesis of these responses. IL-13 also induced tissue fibrosis, at least in part, via its ability to induce and activate TGF-β1. In the TGF-β1 transgenic mouse, epithelial apoptosis preceded the onset of tissue fibrosis and alveolar remodeling. In addition, chemical (Z-VAD-fmk) and genetic (null mutations of early growth response gene 1) interventions blocked apoptosis and ameliorated TGF-β1–induced fibrosis and alveolar restructuring. These studies define an IL-13–TGF-β1 pathway of tissue remodeling that regulates inflammation, mucus metaplasia, apoptosis, vascular responses, and fibrosis in the lung. They also highlight the intimate relationship between apoptosis and fibrosis induced by TGF-β1. By defining the complexities of this pathway, these studies highlight sites at which therapies can be directed to control these important responses.

Key Biomarkers

ApoptosisCCR1CCR2IL-11IL-13TGF-β1VEGF

Symptom Clusters

Alveolar remodelingEosinophilic inflammationMucus metaplasiaTissue fibrosis

References (5)

  • Early Growth Response Gene 1–mediated Apoptosis Is Essential for Transforming Growth Factor β1–induced Pulmonary FibrosisThe Journal of Experimental Medicine · 2004
  • Re-evaluation of fibrogenic cytokines in lung fibrosisCurrent Pharmaceutical Design · 2003
  • Adenovector-mediated gene transfer of active transforming growth factor-beta1 induces prolonged severe fibrosis in rat lung.Journal of Clinical Investigation · 1997
  • Regulation of the effects of TGF-beta 1 by activation of latent TGF-beta 1 and differential expression of TGF-beta receptors (Tbeta R-I and Tbeta R-II) in idiopathic pulmonary fibrosisThorax · 2001
  • Regulation of immune responses by TGF-betaAnnual Review of Immunology · 1998

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