Download Cell and Molecular Biology of Endometrial Carcinoma by Hiroyuki Kuramoto, Mieko Hamano, Manami Imai, Takesi PDF

By Hiroyuki Kuramoto, Mieko Hamano, Manami Imai, Takesi Fujisawa, Yuko Kamata (auth.), Hiroyuki Kuramoto M.D., Ph.D., Masato Nishida M.D., Ph.D. (eds.)

The fifteenth overseas Symposium of the Japan Human cellphone Society on mobile and Molecular Biology of Endometrial Carcinoma introduced jointly best researchers from Japan and world wide. The papers gathered listed here are the paintings of 22 leaders of their box and are equipped in ten significant different types. the 1st part, in vitro experimental platforms, takes up the pioneering paintings through Kuramoto in 1968 and Nishida in 1980 in developing, respectively, the HEC-1 and hormone-responsive endometrial carcinoma mobile strains. different issues comprise apoptosis, proliferation, and development components; telephone cycle regulators; signaling pathways; angiogenesis; carcinogenesis; hormones and hormone receptors; genes and gene expression; endometrial receptivity; and chemo-resistance and -sensitivity. proposing the most recent paintings within the cellphone and molecular biology of endometrial carcinoma, this quantity is a necessary source for gynecologists, pathologists, and molecular biologists.

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Extra resources for Cell and Molecular Biology of Endometrial Carcinoma

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1998) Single gene complementation of the hPMS2 defect in HEC-I-A endometrial carcinoma cells. Cancer Res 58:2978-2981 114. Matsushima-Nishiu M, Unoki M, Ono K et al. (2001) Growth and gene expression profile analysis of endometrial cancer cells expressing exogenous PTEN. Cancer Res 61:3741-3749 115. Lilja JF, Wu D, Reynolds RK et al. (2001) Growth suppression activity of the PTEN tumor suppressor gene in human endometrial cancer cells. Antieancer Res 21: 1969-1974 116. Unoki M, Nakamura Y (2001) Growth-suppressive effects of BPOZ and EGR2, two genes involved in the PTEN signaling pathway.

Gong Y, Murphy LC, Murphy LJ (1994) Hormonal regulation of proliferation and transforming growth factors gene expression in human endometrial adenocarcinoma xenografts. J Steroid Biochem Mol BioI50:13-19 82. Bergman CA, Talavera F,Christ man GM et al. (1997) Transforming growth factor-ß negat ively modulates proliferation and c-fos expression of the human endometrial adenocarcinom a celliine HEC-I -A. Gynecol OncoI65:63-68 83. Gong Y, Anzai Y, Murphy LC et al. (1991) Transforming growth factor gene expression in human endometrial adenocarcinoma cells: Regulation by progestins.

J Cell Physiol 137:593-597 95. Coltrini D, Gualandris A, Nelli EE et al. (1995) Growth advantage and vascularization induced by basic fibroblast growth factor overexpres sion in endometrial HEC-I-B cells: An export-dependent mechanism of action . Cancer Res 55:4729-4738 96. Presta M, Maier JA, Rusnati M et al. (1988) Modulation of plasminogen activator activity in human endometrial adenocarcinoma cells by basic fibroblast growth factor and transforming growth factor beta . Cancer Res 48:6384-6389 97.

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