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1.
Heekman C.A. Agents affecting microtubules stimulate expression of the transformed shape phenotype // J. Cell Biol., 1990. Vol. 111, N 5.-С.480

2.
An interlaboratory comparison of enhanced morphological transformation of Syrian hamster embryo cells cultured under conditions of reduced bicarbonate concentration and pH // Mutat. Res. Genet. Toxicol. Test., 1989. Vol. 222, N 3.-С.205-218

3.
Analysis of phospholipid metabolism in murine keratinocytes transformed by the v-ras oncogene: relationship of phosphatidylinositol turnover and cytokine stimulation stimulation to the transformed phenotype // Carcinogenesis, 1992. Vol. 13, N 12.-С.2367-2373

4.
Discrimination of a transformation phenotype in Syrian golden hamster embryo (SHE) cells using ATR-FTIR spectroscopy // Toxicology, 2009. Vol. 258, N 1.-С.33-38

5.
Effects of testosterone, testosterone propionate, 17'бета'-trenbolone and progesterone on cell transformation and mutagenesis in Syrian hamster embryo cells // Carcinogenesis, 1995. Vol. 16, N 6.-С.1329-1333

6.
Enhanced phospholipase C stimulation and transformation in NIH-3T3 cells expressing Q209LL[q]-'альфа'-subuntis // J. Biol. Chem., 1992. Vol. 267, N 26.-С.18263-18266

7.
Hennigan Robert F. Fos-transformation activates genes associated with invasion // Oncogene, 1994. Vol. 9, N 12.-С.3591-3600

8.
Highly purified uman 'альфа'-thrombin fromotes morphological transformation of BALB/с 3Т3 cells // Carcinogenesis, 1992. Vol. 13, N 1.-С.1-7

9.
Induction of morphological transformation by coaldust extract in BALB/3Т3 А31-1-13 cell line // Mutat. Res. Genet. Toxicol. Test., 1990. Vol. 242, N 3.-С.225-230

10.
Induction of morphological transformation, anchorage independent growth and plasminogen activators in non-tumorigenic human osteosarcoma cells by lead chromate // Anticancer. Res., 1991. Vol. 11, N 3.-С.1045-1054

11.
Introduction of the activated N-ras oncogene into human fibroblasts by retroviral vector induces morphological transformation and tumorigenicity // Carcinogenesis, 1990. Vol. 11, N 10.-С.1803-1809

12.
Coleman William B. Morphologic transformation of the C3Н 10Т1/2 cell line is accompanied by altered expression of the p53 tumor suppressor gene // Carcinogenesis, 1994. Vol. 15, N 2.-С.145-152

13.
Mikalsen Morphological transformation and catalase activity of syrian hamster embryo cells treated with hepatic peroxisome proliferators, TPA and nickel sulphate // Cell Biol. and Toxicol., 1990. Vol. 6, N 1.-С.1-14

14.
Morphological transformation and phosphatidylserine exposure in erythrocytes treated with ribavirin // Biol. and Pharm. Bull., 2009. Vol. 32, N 11.-С.1940-1942

15.
Morphological transformation and phosphatidylserine exposure in erythrocytes treated with ribavirin // Biol. and Pharm. Bull., 2009. Vol. 32, N 11.-С.1940-1942

16.
Neutralization of transformation-enhancing activity by antifibronectin monoclonal antibodies // Cancer J., 1989. Vol. 2[], N 7.-С.231-235

17.
Tsutsui Sodium bisulfite induces morphological transformation of cultured Syrian hamster embryo cells but lacks the ability to induce detectable gene mutations, chromosome mutations or DNA damage // Carcinogenesis, 1990. Vol. 11, N 10.-С.1869-1873

18.
Spontaneous formation of foci of morphologically transformed cells in populations of C3N 10Т{1}/[2] (clone 8) cells // Cancer Res., 1988. Vol. 48, N 21.-С.5969-5976

19.
Cone R.I. Stable expression of the human integrin B6 subunit in mouse NIH 3Т3 cells // J. Cell. Biochem., 1992, Suppl. 16F.-С.183

20.
Rivedal The non-phorbol ester tumor promoter okadic acid does not phomote morphological transformation or inhibit junctional communication in hamster embryo cells // Biochem. and Biophis. Res. Commun, 1990. Vol. 167, N 3.-С.1302-1308

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