Cell surface alterations in transformed and mitotic normal cells monitored with plant agglutinins
Burger, M.M.
Neoplasma 20(5): 579-581
1973
ISSN/ISBN: 0028-2685 PMID: 4356861 Document Number: 69297
Document emailed within 1 workday
Related Documents
Ivanova, O.I.; Komm, S.G.; Vasil'ev, I.M.; Gel'fand, I.M. 1981: Microtubule-independent cell surface stabilization in normal and transformed connective tissue cells Tsitologiia 23(1): 62-66Ames, R.S.; North, S.M.; Fry, K.D.; Tainsky, M.A.; Nicolson, G.L.; Roth, J.A. 1989: Analysis of expression of cell surface antigen Mr 74,000 phosphoglycoprotein in normal, oncogene-transformed, and neoplastic rat cell lines Cancer Research 49(9): 2312-2319
Samil'chuk, E.I.; Lapin, B.A. 1982: Surface morphology of normal and virus-transformed cells in suspended state and their concanavalin a agglutinability Tsitologiia 24(7): 791-796
Fujioka, S.; Ting, R.C.; Gallo, R.C. 1971: Transfer RNA methylases of normal cells, virus-transformed cells, and tumors derived from transformed cells Cancer Research 31(4): 451-456
Molinaro, G.A.; Major, E.O.; Bernhardt, G.; Dray, S.; di Mayorca, G. 1977: Similar cell surface antigens on hamster cells transformed by different papovaviruses Journal of Immunology 118(6): 2295-2298
Tsuchiya, S.; Hakomori, S. 1983: Cell surface glycolipids of transformed NIH 3T3 cells transfected with DNAs of human bladder and lung carcinomas EMBO Journal 2(12): 2323-2326
Grimes, W.J.; Greegor, S. 1976: Carbohydrate compositions of normal, spontaneously transformed, and virally transformed cells derived from BALB/c mice Cancer Research 36(11 Part 1): 3905-3910
Lipkin, G.; Knecht, M.E.; Rosenberg, M. 1978: A potent inhibitor of normal and transformed cell growth derived from contact-inhibited cells Cancer Research 38(3): 635-643
O'Neill, F.J. 1980: Suppression of uncontrolled nuclear division in somatic cell hybrids of normal and transformed cells Journal of the National Cancer Institute 65(3): 497-506
Steinmeyer, K.; Maacke, H.; Deppert, W. 1990: Cell cycle control by p53 in normal (3T3) and chemically transformed (Meth A) mouse cells. I. Regulation of p53 expression Oncogene 5(11): 1691-1699
Baccarani, M.; Ricci, P.; Santucci, M.A.; Tura, S. 1979: Growth patterns, cell composition, and mitotic activity of granulocytic aggregates developing in methyl cellulose from human normal marrow cells Experimental Hematology 7(6): 297-304
Kadohama, T.; Tsuji, K.; Ogawa, K. 1994: Indistinct cell cycle checkpoint after u.v. damage in H-ras-transformed mouse liver cells despite normal p53 gene expression Oncogene 9(10): 2845-2852
Steven, F.S.; Griffin, M.M.; Talbot, I.C. 1991: Evidence for distinct isoenzymic forms of a cell surface protease on normal colonic cells and on carcinoma cells from the same colon Anticancer Research 11(1): 143-150
Steven, F.S.; Benbow, E.W. 1992: Differential inhibition of a cell surface protease on normal and tumour cells Anticancer Research 12(2): 393-397
Masuko, T.; Hashimoto, Y. 1981: Cell surface antigens in normal and neoplastic urinary bladder epithelial cells of the rat Journal of the National Cancer Institute 67(2): 423-429
Conrad, D.H.; Froese, A. 1976: Characterization of the target cell receptor for IgE. II. Polyacrylamide gel analysis of the surface IgE receptor from normal rat mast cells and from rat basophilic leukemia cells Journal of Immunology 116(2): 319-326
Mager, D.; Mak, T.W.; Bernstein, A. 1980: Friend leukaemia virus-transformed cells, unlike normal stem cells, form spleen colonies in Sl/sld mice Nature 288(5791): 592-594
Sedlák, J.; McGown, A.; Hrubisko, M.; Hunáková, L.; Chorváth, B. 1994: Drug-resistance associated alterations of cell surface antigen expression in a human anthracycline-resistant ovarian carcinoma cell line Neoplasma 41(5): 259-262
Rieber, M.; Bacalao, J.; Alonso, G. 1975: Cholera toxin effects on cell growth accompanied by selective alterations in metabolite uptake and modification of cell surface proteins Cancer Research 35(11 Part 1): 3009-3013
Prasolov, V.S.; Chumakov, P.M. 1988: Antisense RNA p53 inhibits proliferation of normal and transformed cells Molekuliarnaia Biologiia 22(5): 1371-1380