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Mammary carcinoma cells

Kano-Sueoka, T. Errick, J.E. (1981). Effects of phosphoethanolamine and ethanolamine on growth of mammary carcinoma cells in culture. Exp. Cell Res. 136, 137-145. [Pg.483]

Nickel water-soluble salts were also reported to induce chromosome aberrations in CHO cells [444, 445] and in mouse mammary carcinoma cells [260, 446], Changes in growth control and chromosome aberrations in human bronchial cells were demonstrated in vitro after exposure to nickel sulphate the changes were insufficient to cause the cells to be tumourigenic [447], Nickel chloride was unable to produce chromosome aberrations in vivo in mammalian male germ cells [448],... [Pg.220]

Borner C, Wyss R, Regazzi R, Eppenberger U, Fabbro D (1987) Immunological quantitation of phospholipid/Ca -dependent protein kinase of human mammary carcinoma cells inverse relationship to estrogen receptors. Int ) Cancer 40 344-348... [Pg.64]

Contessa JN, Reardon DB, Todd D, et al. The inducible expression of dominant-negative epidermal growth factor receptor-CD533 results in radiosensitization of human mammary carcinoma cells. Clin Cancer Res 1999 5 405 111. [Pg.334]

Lee SW, Tomasetto C, Swisshelm K, Keyomarsi K, Sager R. 1992. Down-regulation of a member of the SI00 gene family in mammary carcinoma cells and reexpression by azadeoxycytidine treatment. Proc Natl Acad Sci U S A 89(6) 2504-2508. [Pg.130]

Column 4 Represents the ratio of inhibition constant, Kl7 for the inhibition of dihydrotestosterone (DHT)-stimulated Shionogi mouse mammary carcinoma cell number for the antiandrogen hydroxyflutamide versus a selected experimental agent. Higher values are preferable. [Pg.606]

Column 5 Represents the dose (nM) that inhibits 50% (IC50) of the DHT-stimulated Shionogi mouse mammary carcinoma cell number. Lower values are preferable. Column 6 Represents a comparison of antiandrogenic efficacy (%) of selected experimental agents in rat prostate to that of flutamide (FLU). [Pg.606]

Lopez-Barcons, L. A., Polo, D., Llorens, A., Reig, F., and Fabra, A. (2005), Targeted adriamycin delivery to MXT-B2 metastatic mammary carcinoma cells by transferring liposomes Effect of adriamycin ADR-to-lipid ratio, Oncol. Rept., 14,1337-1343. [Pg.516]

Davis BA and Cowing BE (2000) Pyridoxal supplementation reduces cell proliferation and DNA synthesis in estrogen-dependent and -independent mammary carcinoma cell lines. Nutrition and Cancer 38,281-6. [Pg.421]

Dimmock, J. R Brciyas, B Bigam, G. E Kirkpatrik, D. 1.., and Duke, M. M Cytotoxicity of Mannich bases of a-arylidene- 3-ke-tucsters and related compounds against BMT6 mammary carcinoma cells, Dru.<> Des. Delivery, 1, 51, 1990 Chem. Abstr, 115. 84809,1991. [Pg.77]

Levy, J. A., White, A. C. and McGrath, C. M. (1982). Growth and histology of a human mammary carcinoma cell line at different sites in the athymic mouse. Br. J. Cancer 45, 375-383. [Pg.310]

Lichtner, R. B., Belloni, R. N. and Nicolson, G. L. (1989). Differential adhesion of metastatic rat mammary carcinoma cells to organ-derived microvessel endothelial ceUs and subendothelial matrix. Expl. Cell Biol. 57, 146-152. [Pg.310]

Warfarin has been shown to have no impact on Mtln3 rat mammary carcinoma cell growth in vitro at concentrations less than ImmolH. ... [Pg.2853]

B20. Baxter, R. C., Maitland, J. E., Raison, R. L., Reddel, R. R., and Sutherland, R. L., High molecular weight somatomedin-C/ICF-I from T47D human mammary carcinoma cells Immunoreactivity and bioactivity. In Insulin-like Growth Factors/Somatomedins" (E. M. Spencer, ed.), pp. 615-618. De Cruyter, Berlin, 1983. [Pg.99]

R,12S,13S,14R)-dihydrodiol epoxides of dibenzo[a, ]pyrene determined the effect on the proteins p53 and p21WAF1 in the human mammary carcinoma cell line MCF-7. Carcinogenesis, 20, 859-865. [Pg.429]

This tumor marker [36] was identified by means of a murine monoclonal antibody, B72.3, raised against human, metastatic mammary carcinoma cells [37]. The expression pattern of TAG-72 was ex-... [Pg.1276]

Nuti, M., Teramoto, Y.A., Mariani-Costantini, R., Hand, P.H., Colcher, D., and Schlom, J. (1982) A monoclonal antibody (B72.3) defines patterns of distribution of a novel tumor-associated antigen in human mammary carcinoma cell populations, Int J Cancer 29, 539-545. [Pg.1292]

Other extrinsic factors have also been considered (R7). The overall hormonal milieu influences cell growth and can apparently exert a selective influence on the proliferation of transplanted mammary carcinoma cells with specific ERP properties. This suggests that hormonal manipulation could affect ERP properties of... [Pg.209]

Doll, F., Pfeilschifter, J., and Huwiler, A., The epidermal growth factor stimulates sphingosine kinase-1 expression and activity in the human mammary carcinoma cell line MCF7, Biochim Biophys Acta, 1738 (2005) 72-81. [Pg.512]

Subcutaneous tumors that developed after implantation of human mammary carcinoma cells (MX-1) in athymic mice regressed following local injection of hypericin 1 and exposure to visible light [167]. Tissue uptake and distribution of hypericin 1 was measured in rabbits and in nude mice xenografted with P3 human squamous cell carcinoma to assess the value of this naphthodianthrone as in vivo sensitizer for laser photoactivation of solid tumors. Maximum Hypericum levels were seen in... [Pg.677]

B., Matsuo, H. and Matsumoto, K. (1992) Cloning and characterization of an androgen-induced growth factor essential for the androgen-dependent growth of mouse mammary carcinoma cells. Proc. Natl. Acad. Sci. USA 89 8928-8932. [Pg.374]


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See also in sourсe #XX -- [ Pg.930 ]




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