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Research Article

OSTEOPONTIN EXPRESSION IN PARTICLE-INDUCED LUNG DISEASE

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Pages 585-598 | Published online: 02 Jul 2009

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Raymond J. Langley, Neerad C. Mishra, Juan Carlos Peña-Philippides, Brandon J. Rice, Jean-Clare Seagrave, Shashi P. Singh & Mohan L. Sopori. (2011) Fibrogenic and Redox-Related but not Proinflammatory Genes are Upregulated in Lewis Rat Model of Chronic Silicosis. Journal of Toxicology and Environmental Health, Part A 74:19, pages 1261-1279.
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Yuanbao Zhang, Yiqun Mo, Yue Zhang, Jiali Yuan & Qunwei Zhang. (2023) MMP-3-mediated cleavage of OPN is involved in copper oxide nanoparticle-induced activation of fibroblasts. Particle and Fibre Toxicology 20:1.
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Dorothy J. You & James C. Bonner. (2020) Susceptibility Factors in Chronic Lung Inflammatory Responses to Engineered Nanomaterials. International Journal of Molecular Sciences 21:19, pages 7310.
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Karin Wiench & Lan Ma-Hock. 2019. In Vivo Inhalation Toxicity Screening Methods for Manufactured Nanomaterials. In Vivo Inhalation Toxicity Screening Methods for Manufactured Nanomaterials 25 65 .
Joseph D. Latoche, Alexander Chukwuma Ufelle, Fabrizio Fazzi, Koustav Ganguly, George D. Leikauf & Cheryl L. Fattman. (2016) Secreted Phosphoprotein 1 and Sex-Specific Differences in Silica-Induced Pulmonary Fibrosis in Mice. Environmental Health Perspectives 124:8, pages 1199-1207.
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Alexia J. Taylor, Christina D. McClure, Kelly A. Shipkowski, Elizabeth A. Thompson, Salik Hussain, Stavros Garantziotis, Gregory N. Parsons & James C. Bonner. (2014) Atomic Layer Deposition Coating of Carbon Nanotubes with Aluminum Oxide Alters Pro-Fibrogenic Cytokine Expression by Human Mononuclear Phagocytes In Vitro and Reduces Lung Fibrosis in Mice In Vivo. PLoS ONE 9:9, pages e106870.
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Salik Hussain, Stacey Sangtian, Shamika M Anderson, Ryan J Snyder, Jamie D Marshburn, Annette B Rice, James C Bonner & Stavros Garantziotis. (2014) Inflammasome activation in airway epithelial cells after multi-walled carbon nanotube exposure mediates a profibrotic response in lung fibroblasts. Particle and Fibre Toxicology 11:1, pages 28.
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Robert Landsiedel, Lan Ma-Hock, Thomas Hofmann, Martin Wiemann, Volker Strauss, Silke Treumann, Wendel Wohlleben, Sibylle Gröters, Karin Wiench & Bennard van Ravenzwaay. (2014) Application of short-term inhalation studies to assess the inhalation toxicity of nanomaterials. Particle and Fibre Toxicology 11:1, pages 16.
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Christoph L. Klein, Karin Wiench, Martin Wiemann, Lan Ma-Hock, Ben van Ravenzwaay & Robert Landsiedel. (2012) Hazard identification of inhaled nanomaterials: making use of short-term inhalation studies. Archives of Toxicology 86:7, pages 1137-1151.
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Tara Sabo-Attwood, Maria E. Ramos-Nino, Maria Eugenia-Ariza, Maximilian B. MacPherson, Kelly J. Butnor, Pamela C. Vacek, Sean P. McGee, Jessica C. Clark, Chad Steele & Brooke T. Mossman. (2011) Osteopontin Modulates Inflammation, Mucin Production, and Gene Expression Signatures After Inhalation of Asbestos in a Murine Model of Fibrosis. The American Journal of Pathology 178:5, pages 1975-1985.
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Bi-Hua Cheng, Yunlong Liu, Xiaoling Xuei, Chung-Ping Liao, Debao Lu, Mark E Lasbury, Pamela J Durant & Chao-Hung Lee. (2010) Microarray studies on effects of Pneumocystis carinii infection on global gene expression in alveolar macrophages. BMC Microbiology 10:1.
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Seitaro Fujishima, Takayuki Shiomi, Shuji Yamashita, Yurika Yogo, Yasushi Nakano, Takashi Inoue, Morio Nakamura, Sadatomo Tasaka, Naoki Hasegawa, Naoki Aikawa, Akitoshi Ishizaka & Yasunori Okada. (2010) Production and Activation of Matrix Metalloproteinase 7 (Matrilysin 1) in the Lungs of Patients With Idiopathic Pulmonary Fibrosis. Archives of Pathology & Laboratory Medicine 134:8, pages 1136-1142.
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James B Mangum, Elizabeth A Turpin, Aurita Antao-Menezes, Mark F Cesta, Edilberto Bermudez & James C Bonner. (2006) Single-Walled Carbon Nanotube (SWCNT)-induced interstitial fibrosis in the lungs of rats is associated with increased levels of PDGF mRNA and the formation of unique intercellular carbon structures that bridge alveolar macrophages In Situ. Particle and Fibre Toxicology 3:1.
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