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Cancer cell lines cells

Lee, W.J., Roberts-Thomson, S.J., Holman, N.A., May, F.J., Lehrbach, G.M., Monteith, G.R., 2002, Expression of plasma membrane calcium pump isoform mRNAs in breast cancer cell lines. Cell Signal 14, 1015-1022. [Pg.380]

Pigozzi, D., Ducret, T., Tajeddine, N., Gala, J. L., Tombal, B. and Gailly, P., 2006, Calcium store contents control the expression of TRPC1, TRPC3 and TRPV6 proteins in LNCaP prostate cancer cell line. Cell Calcium 39, 401-15. [Pg.425]

Laval, S. Butler, R. Shelling, A.N. Hanby, A.M. Poulsom, R. Ganesan, T.S. Isolation and characterization of an epithelial-specific receptor tyrosine kinase from an ovarian cancer cell line. Cell Growth Differ., 5, 1173-1183 (1994)... [Pg.614]

Westley B. and Rochefort H., 1980, A secreted glycoprotein induced by estrogen in human breast cancer cell lines. Cell 20 353-362. [Pg.161]

Li M, Zheng H, Duan Z, Liu H, Hu D, Bode A, Dong Z, Cao Y. Promotion of cell proliferation and inhibition of ADCC by caneerous immunoglobulin expressed in cancer cell lines. Cell Mol Immunol. 2012 9 54-61. [Pg.784]

Chen S, Ruan Q, Bedner E, Deptala A, Wang X, Hsieh TC, et al. Effects of the flavonoid baicahn and its metabohte baicalein on androgen receptor expression, cell cycle progression and apoptosis of prostate cancer cell lines. Cell Prolif 2001 34 293-304. [Pg.347]

Xiao H, Rawal M, Hahm ER, Singh SV Benzo[a]pyrene-7,8-diol-9,10-epoxide causes caspase-mediated apoptosis in H460 human lung cancer cell line. Cell Cycle 2007, 6 2826-2834. [Pg.619]

WS-7528 [132147-69-4][VI] a nonsteroidal estrogen, is an isoflavone which has been isolated from Streptomjces sp. No. 7528 and is an estrogen agonist. It inhibits [3ff]-estradiol binding to its receptor in rat uterine cytosol at an inhibitor for 50% of the rats tested (IC q) concentration of 5.7 nM. It also induces the growth of estrogen-dependent human breast cancer cell line MCE-7 (7). [Pg.233]

Hsu J-T, Ying C, Lan H-C. 1998. The effects of pesticides chlordane, dieldrin and endosulfan on the growth of human breast cancer cell lines MCF-7 and SK-BR-3. J Chinese Agri Chem Soc 36(6) 535-546. [Pg.299]

Legler J, van den Brink C, Brouwer A, et al. 1998. Assessment of (anti-)estrogenic compounds using a stably transfected luciferase reporter gene assay in the human T47-D breast cancer cell line. Organohalogen Compounds 37 265. [Pg.303]

LUND E K, SMITH T K, CLARKE R G and JOHNSON I T (2001) Cell death in the colorectal cancer cell line HT29 in response to glucosinolate metabolites , J i FoodAgric, 81 959-61. [Pg.64]

HASHIMOTO S, XU M, MASUDA Y, AIUCHI T, NAKAJO S, CAO J, MIYAKOSHI M, IDA Y and NAKAYA K (1999) Beta-hydroxyisovalerylshikonin inhibits the cell growth of various cancer cell lines and induces apoptosis in leukemia HL-60 cells through a mechanism different from those of Fas and etoposide , J Biochem (Tokyo), 125 17-23. [Pg.64]

TWADDLE G M, TURBOV J, LIU N, MURTHY s (1999) Tyrosine kinase inhibitors as antiprohferative agents against estrogen-dependent breast cancer cell line in vitro. JSurg Oncol. 70 ... [Pg.86]

YANAGIHARA K, ITO A, TOGE T, NUMOTO M (1993) Antiprolferative effects of isoflavones on human cancer cell lines established from gastrointestinal tract. Cancer Res. 53 5815-21. [Pg.86]

OKABE s, SUGANUMA M, HAYASHi M, SUEOKA E, KOMORI A and FUJIKI H (1997) Mechanisms of growth inhibition of hmnan lung cancer cell line, PC-9, by tea polyphenols , Jpn J Cancer Res, 88 (7), 639-43. [Pg.155]

PASCHKA A G, BUTLER R and YOUNG c Y (1998) luductiou of apoptosis in prostate cancer cell lines by the green tea component, (-)-epigallocatechin-3-gallate . Cancer Lett, 130, 1-7. [Pg.155]

SUGANUMA M, OKABE s, KAi Y, suEOKA N, suEOKA E and FUJiKi H (1999) Synergistic effects of (-)-epigallocatechin gallate with (-)-epicatechin, sulindac, or tamoxifen on cancer-preventive activity in human lung cancer cell line PC-9 , Cancer Res, 59, 44-7. [Pg.157]

AVIVI-GREEN c, PLOAK-CHARCON s, MADAR z, SCHWARTZ B (2002) Different molecule events account for butyrate-induced apoptosis in tiw human colon cancer cell line. J. Nutr. 132 1812-18. [Pg.176]

GAMET L, DAViAUD D, DENis-POUXViEL 0, REMESY 0, MURAT J 0 (1992) Effects of shoit-chain fatty acids on growth and differentiation of the human colon-cancer cell line HT29. Int J Cancer. 52 286-9. [Pg.178]

Haliclonacyclamine F (25), arenosclerin D (26), and arenosclerin E (27) have been recently isolated from the sponge Pachychalina alcaloidifera endemic in Brazil [26]. The alkaloids 25-27 were isolated from the cytotoxic, antibiotic, and antituberculosis MeOH crude extract of P. alcaloidifera by a series of separations on silica-gel and cyanopropyl-bonded silica-gel columns. The structures of compounds 25-27 were established by the same approach employed for the structural elucidation of haliclonacyclamine E (13) and arenosclerins A-C (14-16) [18], as well as by comparison with NMR data for this last series of alkaloids. The alkaloids 25-27 displayed moderate cytotoxic activity against SF295 (human CNS), MDA-MB435 (human breast), HCT8 (colon), and HL60 (leukemia) cancer cell lines. [Pg.219]


See other pages where Cancer cell lines cells is mentioned: [Pg.126]    [Pg.69]    [Pg.104]    [Pg.607]    [Pg.607]    [Pg.241]    [Pg.432]    [Pg.17]    [Pg.96]    [Pg.77]    [Pg.77]    [Pg.12]    [Pg.429]    [Pg.5]    [Pg.594]    [Pg.708]    [Pg.769]    [Pg.834]    [Pg.1152]    [Pg.1188]    [Pg.1262]    [Pg.367]    [Pg.380]    [Pg.263]    [Pg.76]    [Pg.134]    [Pg.135]    [Pg.139]    [Pg.200]    [Pg.214]    [Pg.17]    [Pg.348]   


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Cancer cell lines

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