Publications | PubMed=6243721; DOI=10.1093/jnci/64.3.465 Magrath I.T., Pizzo P.A., Whang-Peng J., Douglass E.C., Alabaster O., Gerber P., Freeman C.B., Novikovs L. Characterization of lymphoma-derived cell lines: comparison of cell lines positive and negative for Epstein-Barr virus nuclear antigen. I Physical, cytogenetic, and growth characteristics. J. Natl. Cancer Inst. 64:465-476(1980) PubMed=6243722; DOI=10.1093/jnci/64.3.477 Magrath I.T., Freeman C.B., Pizzo P.A., Gadek J., Jaffe E.S., Santaella M., Hammer C., Frank M.M., Reaman G., Novikovs L. Characterization of lymphoma-derived cell lines: comparison of cell lines positive and negative for Epstein-Barr virus nuclear antigen II. Surface markers. J. Natl. Cancer Inst. 64:477-483(1980) PubMed=6265077 Pizzo P.A., Chattopadhyay S.K., Magrath I.T., Del Giacco E., Sherrick D., Gray T.E. Examination of Epstein-Barr virus and C-type proviral sequences in American and African lymphomas and derivative cell lines. Cancer Res. 41:3165-3171(1981) PubMed=6286763; DOI=10.4049/jimmunol.129.3.1336 Benjamin D., Magrath I.T., Maguire R.T., Janus C., Todd-Kulikowsk H.D., Parsons R.G. Immunoglobulin secretion by cell lines derived from African and American undifferentiated lymphomas of Burkitt's and non-Burkitt's type. J. Immunol. 129:1336-1342(1982) PubMed=3080238 Sieverts H., Alabaster O., Goldschmidts W., Magrath I.T. Expression of surface antigens during the cell cycle in different growth phases of American and African Burkitt's lymphoma cell lines. Cancer Res. 46:1182-1188(1986) PubMed=3100061; DOI=10.1016/0008-8749(86)90099-7 Benjamin D., Bazar L.S., Wallace B., Jacobson R.J. Heterogeneity of B-cell growth factor receptor reactivity in healthy donors and in patients with chronic lymphatic leukemia: relationship to B-cell-derived lymphokines. Cell. Immunol. 103:394-408(1986) PubMed=2052620; DOI=10.1073/pnas.88.12.5413; PMCID=PMC51883 Gaidano G., Ballerini P., Gong J.Z., Inghirami G., Neri A., Newcomb E.W., Magrath I.T., Knowles D.M., Dalla-Favera R. p53 mutations in human lymphoid malignancies: association with Burkitt lymphoma and chronic lymphocytic leukemia. Proc. Natl. Acad. Sci. U.S.A. 88:5413-5417(1991) PubMed=1325212; DOI=10.1182/blood.V80.5.1289.1289 Benjamin D., Knobloch T.J., Dayton M.A. Human B-cell interleukin-10: B-cell lines derived from patients with acquired immunodeficiency syndrome and Burkitt's lymphoma constitutively secrete large quantities of interleukin-10. Blood 80:1289-1298(1992) PubMed=8402660 O'Connor P.M., Jackman J., Jondle D., Bhatia K.G., Magrath I.T., Kohn K.W. Role of the p53 tumor suppressor gene in cell cycle arrest and radiosensitivity of Burkitt's lymphoma cell lines. Cancer Res. 53:4776-4780(1993) PubMed=8515068; DOI=10.4049/jimmunol.150.12.5418 Jain V.K., Judde J.-G., Max E.E., Magrath I.T. Variable IgH chain enhancer activity in Burkitt's lymphomas suggests an additional, direct mechanism of c-myc deregulation. J. Immunol. 150:5418-5428(1993) PubMed=8176200; DOI=10.4049/jimmunol.152.10.4749 Benjamin D., Sharma V., Knobloch T.J., Armitage R.J., Dayton M.A., Goodwin R.G. B cell IL-7. Human B cell lines constitutively secrete IL-7 and express IL-7 receptors. J. Immunol. 152:4749-4757(1994) PubMed=7757991 Bae I., Fan S.-J., Bhatia K.G., Kohn K.W., Fornace A.J. Jr., O'Connor P.M. Relationships between G1 arrest and stability of the p53 and p21Cip1/Waf1 proteins following gamma-irradiation of human lymphoma cells. Cancer Res. 55:2387-2393(1995) PubMed=8568269; DOI=10.4049/jimmunol.156.4.1626 Benjamin D., Sharma V., Kubin M., Klein J.L., Sartori A., Holliday J., Trinchieri G. IL-12 expression in AIDS-related lymphoma B cell lines. J. Immunol. 156:1626-1637(1996) PubMed=9192833 Cherney B.W., Bhatia K.G., Sgadari C., Gutierrez M.I., Mostowski H.S., Pike S.E., Gupta G., Magrath I.T., Tosato G. Role of the p53 tumor suppressor gene in the tumorigenicity of Burkitt's lymphoma cells. Cancer Res. 57:2508-2515(1997) PubMed=9473234; DOI=10.1182/blood.V91.5.1680 Klangby U., Okan I., Magnusson K.P., Wendland M., Lind P., Wiman K.G. p16/INK4a and p15/INK4b gene methylation and absence of p16/INK4a mRNA and protein expression in Burkitt's lymphoma. Blood 91:1680-1687(1998) PubMed=9973220 Gutierrez M.I., Cherney B.W., Hussain A., Mostowski H.S., Tosato G., Magrath I.T., Bhatia K.G. Bax is frequently compromised in Burkitt's lymphomas with irreversible resistance to Fas-induced apoptosis. Cancer Res. 59:696-703(1999) |