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STAT3 Regulates the Onset of Oxidant-induced Senescence in Lung Fibroblasts.
Waters, David W; Blokland, Kaj E C; Pathinayake, Prabuddha S; Wei, Lan; Schuliga, Michael; Jaffar, Jade; Westall, Glen P; Hansbro, Philip M; Prele, Cecilia M; Mutsaers, Steven E; Bartlett, Nathan W; Burgess, Janette K; Grainge, Christopher L; Knight, Darryl A.
Affiliation
  • Waters DW; 1 School of Biomedical Sciences and Pharmacy and.
  • Blokland KEC; 2 National Health and Medical Research Council Centre of Research Excellence in Pulmonary Fibrosis, Camperdown, Australia.
  • Pathinayake PS; 1 School of Biomedical Sciences and Pharmacy and.
  • Wei L; 2 National Health and Medical Research Council Centre of Research Excellence in Pulmonary Fibrosis, Camperdown, Australia.
  • Schuliga M; 3 Department of Pathology and Medical Biology, and.
  • Jaffar J; 4 Groningen Research Institute for Asthma and COPD, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.
  • Westall GP; 5 School of Medicine and Public Health, University of Newcastle, Callaghan, Australia.
  • Hansbro PM; 1 School of Biomedical Sciences and Pharmacy and.
  • Prele CM; 1 School of Biomedical Sciences and Pharmacy and.
  • Mutsaers SE; 6 Allergy, Immunology and Respiratory Medicine, Alfred Hospital, Prahran, Australia; and.
  • Bartlett NW; 5 School of Medicine and Public Health, University of Newcastle, Callaghan, Australia.
  • Burgess JK; 1 School of Biomedical Sciences and Pharmacy and.
  • Grainge CL; 7 Centre for Cell Therapy and Regenerative Medicine, School of Biomedical Sciences, and.
  • Knight DA; 8 Institute for Respiratory Health, University of Western Australia, Nedlands, Australia.
Am J Respir Cell Mol Biol ; 61(1): 61-73, 2019 07.
Article in En | MEDLINE | ID: mdl-30608861
ABSTRACT
Idiopathic pulmonary fibrosis (IPF) is a chronic lung disease of unknown cause with a median survival of only 3 years. Other investigators and we have shown that fibroblasts derived from IPF lungs display characteristics of senescent cells, and that dysregulated activation of the transcription factor signal transducer and activator of transcription 3 (STAT3) correlates with IPF progression. The question of whether STAT3 activation is involved in fibroblast senescence remains unanswered. We hypothesized that inhibiting STAT3 activation after oxidant-induced senescence would attenuate characteristics of the senescent phenotype. We aimed to characterize a model of oxidant-induced senescence in human lung fibroblasts and to determine the effect of inhibiting STAT3 activity on the development of senescence. Exposing human lung fibroblasts to 150 µM hydrogen peroxide (H2O2) resulted in increased senescence-associated ß-galactosidase content and expression of p21 and IL-6, all of which are features of senescence. The shift into senescence was accompanied by an increase of STAT3 translocation to the nucleus and mitochondria. Additionally, Seahorse analysis provided evidence of increased mitochondrial respiration characterized by increased basal respiration, proton leak, and an associated increase in superoxide (O2-) production in senescent fibroblasts. Targeting STAT3 activity using the small-molecule inhibitor STA-21 attenuated IL-6 production, reduced p21 levels, decreased senescence-associated ß-galactosidase accumulation, and restored normal mitochondrial function. The results of this study illustrate that stress-induced senescence in lung fibroblasts involves the activation of STAT3, which can be pharmacologically modulated.
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Full text: 1 Database: MEDLINE Main subject: Oxidants / Cellular Senescence / STAT3 Transcription Factor / Fibroblasts / Lung Type of study: Prognostic_studies Limits: Humans Language: En Year: 2019 Type: Article

Full text: 1 Database: MEDLINE Main subject: Oxidants / Cellular Senescence / STAT3 Transcription Factor / Fibroblasts / Lung Type of study: Prognostic_studies Limits: Humans Language: En Year: 2019 Type: Article