The environmental pollutant and tobacco smoke constituent Dibenzo[def,p]chrysene is a Co-factor for malignant progression of mouse oral papillomavirus infections.
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V. Walter | S. Amin | S. Brendle | N. Christensen | Debra A. Shearer | D. Stairs | R. Viscidi | K. El-Bayoumy | C. Aliaga | Kun-Ming Chen | Yuan-Wan Sun | Hannah M. Atkins | Sarah A. Brendle | K. Gowda | Jiafen Hu | K. Balogh | Jingwei J Li | Vonn Walter | Jingwei J. Li | Krishne Gowda
[1] V. Walter,et al. An Integrated Approach for Preventing Oral Cavity and Oropharyngeal Cancers: Two Etiologies with Distinct and Shared Mechanisms of Carcinogenesis , 2020, Cancer Prevention Research.
[2] P. Lambert,et al. An Infection-Based Murine Model for Papillomavirus-Associated Head and Neck Cancer , 2020, mBio.
[3] P. Lambert,et al. Mus musculus Papillomavirus 1: a New Frontier in Animal Models of Papillomavirus Pathogenesis , 2020, Journal of Virology.
[4] Anna C. Salzberg,et al. Black Raspberry Inhibits Oral Tumors in Mice Treated with the Tobacco Smoke Constituent Dibenzo(def,p)chrysene Via Genetic and Epigenetic Alterations , 2020, Cancer Prevention Research.
[5] Hung-Ming Wang,et al. Review of emerging biomarkers in head and neck squamous cell carcinoma in the era of immunotherapy and targeted therapy , 2019, Head & neck.
[6] P. Lambert,et al. A Novel In Vivo Infection Model To Study Papillomavirus-Mediated Disease of the Female Reproductive Tract , 2019, mBio.
[7] I. Rusyn,et al. Sex-specific differences in genotoxic and epigenetic effects of 1,3-butadiene among mouse tissues , 2018, Archives of Toxicology.
[8] L. Thuler,et al. Prevalence of hepatitis C virus infection and its impact on the prognosis of head and neck cancer patients. , 2018, Oral oncology.
[9] M. Sapp,et al. Inhibition of Epstein-Barr Virus Replication in Human Papillomavirus-Immortalized Keratinocytes , 2018, Journal of Virology.
[10] S. J. Henley,et al. Trends in Human Papillomavirus–Associated Cancers — United States, 1999–2015 , 2018, MMWR. Morbidity and mortality weekly report.
[11] Jian Ma,et al. S100A8/A9 in Inflammation , 2018, Front. Immunol..
[12] P. Lambert,et al. Development of an in vivo infection model to study Mouse papillomavirus-1 (MmuPV1). , 2018, Journal of virological methods.
[13] M. Herzberg,et al. Calprotectin and the Initiation and Progression of Head and Neck Cancer , 2018, Journal of dental research.
[14] D. Gotte,et al. The full transcription map of mouse papillomavirus type 1 (MmuPV1) in mouse wart tissues , 2017, PLoS pathogens.
[15] Anna C. Salzberg,et al. Hypomethylated Fgf3 is a potential biomarker for early detection of oral cancer in mice treated with the tobacco carcinogen dibenzo[def,p]chrysene , 2017, PloS one.
[16] S. Amin,et al. Effects of chronic alcohol consumption on DNA damage and immune regulation induced by the environmental pollutant dibenzo[a,l]pyrene in oral tissues of mice , 2017, Journal of environmental science and health. Part C, Environmental carcinogenesis & ecotoxicology reviews.
[17] N. Christensen,et al. The Mouse Papillomavirus Infection Model , 2017, Viruses.
[18] J. Schiller,et al. Human papillomavirus in cervical cancer and oropharyngeal cancer: One cause, two diseases , 2017, Cancer.
[19] S. Amin,et al. Carcinogenesis of the Oral Cavity: Environmental Causes and Potential Prevention by Black Raspberry. , 2017, Chemical research in toxicology.
[20] S. Kenney,et al. Human papillomavirus promotes Epstein-Barr virus maintenance and lytic reactivation in immortalized oral keratinocytes. , 2016, Virology.
[21] I. Frazer,et al. Role of Ultraviolet Radiation in Papillomavirus-Induced Disease , 2016, PLoS pathogens.
[22] N. Christensen,et al. Mouse papillomavirus MmuPV1 infects oral mucosa and preferentially targets the base of the tongue. , 2016, Virology.
[23] N. Christensen,et al. Tracking vaginal, anal and oral infection in a mouse papillomavirus infection model. , 2015, The Journal of general virology.
[24] A. Jemal,et al. Global cancer statistics, 2012 , 2015, CA: a cancer journal for clinicians.
[25] J. Sundberg,et al. Immune Status, Strain Background, and Anatomic Site of Inoculation Affect Mouse Papillomavirus (MmuPV1) Induction of Exophytic Papillomas or Endophytic Trichoblastomas , 2014, PloS one.
[26] S. Syrjänen,et al. Smokeless tobacco increases aneuploidy in oral HPV16 E6/E7-transformed keratinocytes in vitro. , 2014, Journal of oral pathology & medicine : official publication of the International Association of Oral Pathologists and the American Academy of Oral Pathology.
[27] S. Merrill,et al. Pharyngeal and cervical cancer incidences significantly correlate with personal UV doses among whites in the United States. , 2014, Anticancer research.
[28] D. Lowy,et al. Strain-Specific Properties and T Cells Regulate the Susceptibility to Papilloma Induction by Mus musculus Papillomavirus 1 , 2014, PLoS pathogens.
[29] D. Bates,et al. Fitting Linear Mixed-Effects Models Using lme4 , 2014, 1406.5823.
[30] N. Christensen,et al. Secondary Infections, Expanded Tissue Tropism, and Evidence for Malignant Potential in Immunocompromised Mice Infected with Mus musculus Papillomavirus 1 DNA and Virus , 2013, Journal of Virology.
[31] A. Santarelli,et al. Is expression of p120ctn in oral squamous cell carcinomas a prognostic factor? , 2013, Oral surgery, oral medicine, oral pathology and oral radiology.
[32] K. Ahn,et al. Mutagenesis and carcinogenesis induced by dibenzo[a,l]pyrene in the mouse oral cavity: a potential new model for oral cancer , 2012, International journal of cancer.
[33] S. Amin,et al. Comparative metabolism of benzo[a]pyrene by human keratinocytes infected with high-risk human papillomavirus types 16 and 18 as episomal or integrated genomes , 2012, Journal of carcinogenesis.
[34] M. Pawlita,et al. Complex Etiology Underlies Risk and Survival in Head and Neck Cancer Human Papillomavirus, Tobacco, and Alcohol: A Case for Multifactor Disease , 2012, Journal of oncology.
[35] Zengtong Zhou,et al. Phosphorylated p120-catenin expression has predictive value for oral cancer progression , 2012, Journal of Clinical Pathology.
[36] Takuji Tanaka,et al. Understanding Carcinogenesis for Fighting Oral Cancer , 2011, Journal of oncology.
[37] Ju-Seog Lee,et al. Deletion of p120-catenin results in a tumor microenvironment with inflammation and cancer that establishes it as a tumor suppressor gene. , 2011, Cancer cell.
[38] M. Fraga,et al. Global DNA methylation: a common early event in oral cancer cases with exposure to environmental carcinogens or viral agents. , 2009, Puerto Rico health sciences journal.
[39] J. Tobias,et al. Cdx1 and c-Myc Foster the Initiation of Transdifferentiation of the Normal Esophageal Squamous Epithelium toward Barrett's Esophagus , 2008, PloS one.
[40] S. Law,et al. Altered E-Cadherin Expression and p120 Catenin Localization in Esophageal Squamous Cell Carcinoma , 2007, Annals of surgical oncology.
[41] N. Park,et al. HPV-16, tobacco-specific N-nitrosamine, and N-methyl-N'-nitro-N-nitrosoguanidine in oral carcinogenesis. , 1993, Cancer research.
[42] F. Carinci,et al. HPV acting on E-cadherin, p53 and p16: literature review. , 2018, Journal of biological regulators and homeostatic agents.
[43] A. Jemal,et al. Cancer statistics, 2017 , 2017, CA: a cancer journal for clinicians.
[44] L. Tao,et al. Alcohol metabolism by oral streptococci and interaction with human papillomavirus leads to malignant transformation of oral keratinocytes. , 2015, Advances in experimental medicine and biology.
[45] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[46] W. Szyfter,et al. [Analysis of aromatic DNA adducts in oral cavity and pharyngeal cancer]. , 2000, Otolaryngologia polska = The Polish otolaryngology.