Proceedings of the National Academy of Sciences · 1993 · 205 citations · 26 references
Asbestos-induced CarcinogenesisC-jun Gene ExpressionFibrosisTumor MicroenvironmentOncogenic AgentPersistent InductionImmunologyPathologyBronchial NeoplasmTranscription FactorsMedicineCell BiologyCellular PhysiologyLung CancerOxidative Stress
To investigate the mechanisms of asbestos-induced carcinogenesis, expression of c-fos and c-jun protooncogenes was examined in rat pleural mesothelial cells and hamster tracheal epithelial cells after exposure to crocidolite or chrysotile asbestos. In contrast to phorbol 12-myristate 13-acetate, which induces rapid and transient increases in c-fos and c-jun mRNA, asbestos causes 2- to 5-fold increases in c-fos and c-jun mRNA that persist for at least 24 hr in mesothelial cells. The induction of c-fos and c-jun mRNA by asbestos in mesothelial cells is dose-dependent and is most pronounced with crocidolite, the type of asbestos most pathogenic in the causation of pleural mesothelioma. Induction of c-jun gene expression by asbestos occurs in tracheal epithelial cells but is not accompanied by a corresponding induction of c-fos gene expression. In both cell types, asbestos induces increases in protein factors that bind specifically to the DNA sites that mediate gene expression by the AP-1 family of transcription factors. The persistent induction of AP-1 transcription factors by asbestos suggests a model of asbestos-induced carcinogenesis involving chronic stimulation of cell proliferation through activation of the early response gene pathway that includes c-jun and/or c-fos.
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Increased cell division as a cause of human cancer.
Susan Preston‐Martin, MC Pike, R K Ross et al. · PubMed · 1990 · 906 citations
Asbestos: Scientific Developments and Implications for Public Policy
Brooke T. Mossman, J. Bignon, Morton Corn et al. · Science · 1990 · 754 citations
Donna Cohén, Paulo César Peregrino Ferreira, Reiner Gentz et al. · Genes & Development · 1989 · 319 citations · Full text