Chromosomal abnormalities in HPV-16-immortalized oral epithelial cells.
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C. Disteche | D. Oda | L. Bigler | E. Mao
[1] D. Oda,et al. HPV immortalization of human oral epithelial cells: a model for carcinogenesis. , 1996, Experimental cell research.
[2] K. Vousden,et al. Human papillomaviruses and cancer of the cervix , 1996 .
[3] N. Park,et al. Effect of UV-irradiation on cell cycle, viability and the expression of p53, gadd153 and gadd45 genes in normal and HPV-immortalized human oral keratinocytes. , 1994, Oncogene.
[4] P. Rabinovitch. Chapter 18 DNA Content Histogram and Cell-Cycle Analysis , 1994 .
[5] P. Rabinovitch. DNA content histogram and cell-cycle analysis. , 1994, Methods in cell biology.
[6] R. Schlegel,et al. Keratinocytes immortalized by human papillomavirus-18 exhibit alterations dependent upon host genetic background and complexity of viral genes transfected. , 1994, Pathobiology : journal of immunopathology, molecular and cellular biology.
[7] J. McDougall,et al. Interaction of HPV-18 and nitrosomethylurea in the induction of squamous cell carcinoma. , 1993, Carcinogenesis.
[8] Sidney E. Chang,et al. DOK, a cell line established from human dysplastic oral mucosa, shows a partially transformed non‐malignant phenotype , 1992, International journal of cancer.
[9] C. Mok,et al. Presence of p53 mutation in human cervical carcinomas associated with HPV-33 infection. , 1992, Anticancer research.
[10] C. Jones,et al. Characterization of primary human fibroblasts transformed by human papilloma virus type 16 and herpes simplex virus type 2 DNA sequences. , 1992, The Journal of general virology.
[11] G. Demers,et al. The E6 and E7 genes of human papillomavirus type 6 have weak immortalizing activity in human epithelial cells , 1992, Journal of virology.
[12] H. Hausen. Viruses in human cancers , 1991 .
[13] J. Roth,et al. p53 gene mutations in Barrett's epithelium and esophageal cancer. , 1991, Cancer research.
[14] A. Levine,et al. The p53 tumour suppressor gene , 1991, Nature.
[15] S. Watts,et al. Human papillomavirus DNA types in squamous cell carcinomas of the head and neck. , 1991, Oral surgery, oral medicine, and oral pathology.
[16] T. Crook,et al. p53 point mutation in HPV negative human cervical carcinoma cell lines. , 1991, Oncogene.
[17] F. Watt,et al. Two strains of human keratinocytes transfected with HPV16 DNA: comparison with the normal parental cells. , 1991, Carcinogenesis.
[18] J. McDougall,et al. Progression of human papillomavirus type 18-immortalized human keratinocytes to a malignant phenotype. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[19] H. zur Hausen. Viruses in human cancers. , 1991, Science.
[20] W. A. Yeudall,et al. Human papillomavirus DNA in biopsies of oral tissues. , 1991, The Journal of general virology.
[21] Arnold J. Levine,et al. The E6 oncoprotein encoded by human papillomavirus types 16 and 18 promotes the degradation of p53 , 1990, Cell.
[22] A. Levine,et al. Association of human papillomavirus types 16 and 18 E6 proteins with p53. , 1990, Science.
[23] J. DiPaolo,et al. Integration of human papillomavirus 16 DNA and genomic rearrangements in immortalized human keratinocyte lines. , 1990, Cancer research.
[24] M. Manos,et al. 19 – SAMPLE PREPARATION FROM PARAFFIN-EMBEDDED TISSUES , 1990 .
[25] J. McDougall,et al. Cytogenetic analysis of eight human papillomavirus immortalized human keratinocyte cell lines , 1989, International journal of cancer.
[26] E. de Villiers. Heterogeneity of the human papillomavirus group , 1989, Journal of virology.
[27] E. Villiers. Heterogeneity of the human papillomavirus group. , 1989 .
[28] J. DiPaolo,et al. Preferential sites for viral integration on mammalian genome. , 1989, Cancer genetics and cytogenetics.
[29] H. Hausen,et al. Papillomaviruses in anogenital cancer as a model to understand the role of viruses in human cancers , 1989 .
[30] C. Woodworth,et al. Induction of human cervical squamous cell carcinoma by sequential transfection with human papillomavirus 16 DNA and viral Harvey ras. , 1989, Oncogene.
[31] N. Auersperg,et al. Karyotypic analysis of two related cervical carcinoma cell lines that contain human papillomavirus type 18 DNA and express divergent differentiation. , 1989, Cancer genetics and cytogenetics.
[32] K. Münger,et al. The human papilloma virus-16 E7 oncoprotein is able to bind to the retinoblastoma gene product. , 1989, Science.
[33] J. van der Noordaa,et al. Induction of anchorage-independent growth of human embryonic fibroblasts with a deletion in the short arm of chromosome 11 by human papillomavirus type 16 DNA , 1988, Journal of virology.
[34] J. DiPaolo,et al. Continuous cell lines with altered growth and differentiation properties originate after transfection of human keratinocytes with human papillomavirus type 16 DNA. , 1988, Carcinogenesis.
[35] F. Hecht,et al. Regional chromosome localization of human papillomavirus integration sites near fragile sites, oncogenes, and cancer chromosome breakpoints. , 1988, Cancer genetics and cytogenetics.
[36] S. Wilczynski,et al. Human papillomaviruses and cervical cancer: analysis of histopathologic features associated with different viral types. , 1988, Human pathology.
[37] Bishop Jm. The molecular genetics of cancer: 1988. , 1988 .
[38] G. Temple,et al. Possible prognostic significance of human papillomavirus type in cervical cancer. , 1988, Gynecologic oncology.
[39] L. Banks,et al. Analysis of human papillomavirus sequences in cell lines recently derived from cervical cancers. , 1988, Cancer research.
[40] M. Anderson,et al. Prevalence of HPV DNA and viral copy numbers in cervical scrapes from women with normal and abnormal cervices , 1987, The Journal of pathology.
[41] N. Maitland,et al. Detection of human papillomavirus DNA in biopsies of human oral tissue. , 1987, British Journal of Cancer.
[42] J. DiPaolo,et al. Differential early viral gene expression in two stages of human papillomavirus type 16 DNA-induced malignant transformation , 1987, Molecular and cellular biology.
[43] J. Schneider,et al. Human papillomavirus type 16 DNA cooperates with activated ras in transforming primary cells. , 1987, The EMBO journal.
[44] M. Braun,et al. Structural and transcriptional analysis of human papillomavirus type 16 sequences in cervical carcinoma cell lines , 1987, Journal of virology.
[45] J. DiPaolo,et al. Transformation of human fibroblasts and keratinocytes with human papillomavirus type 16 DNA , 1987, Journal of virology.
[46] J. Bishop. The molecular genetics of cancer. , 1987, Science.
[47] N. Fusenig,et al. Molecular and cytogenetic analysis of immortalized human primary keratinocytes obtained after transfection with human papillomavirus type 16 DNA. , 1987, Oncogene.
[48] A. Schneider-Gädicke,et al. Different human cervical carcinoma cell lines show similar transcription patterns of human papillomavirus type 18 early genes. , 1986, The EMBO journal.
[49] D. McCance,et al. Human papillomaviruses and cancer. , 1986, Biochimica et biophysica acta.
[50] M. M. Pater,et al. Human papillomavirus types 16 and 18 sequences in carcinoma cell lines of the cervix. , 1985, Virology.
[51] L. Gissmann,et al. The physical state of human papillomavirus type 16 DNA in benign and malignant genital tumours. , 1985, The Journal of general virology.
[52] G. Klein,et al. Evolution of tumours and the impact of molecular oncology , 1985, Nature.
[53] Wolfgang Mayer,et al. Structure and transcription of human papillomavirus sequences in cervical carcinoma cells , 1985, Nature.
[54] H. Hausen,et al. A new type of papillomavirus DNA, its presence in genital cancer biopsies and in cell lines derived from cervical cancer. , 1984, The EMBO journal.
[55] L. Gissmann,et al. A papillomavirus DNA from a cervical carcinoma and its prevalence in cancer biopsy samples from different geographic regions. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[56] J. Rheinwald,et al. A new small (40 kd) keratin filament protein made by some cultured human squamous cell carcinomas , 1981, Cell.