Advances in Cancer Research, Volume 103
George F. Vande Woude, George Klein
Academic Press, 2009 - Medical - 147 pages
Advances in Cancer Research provides invaluable information on the exciting and fast-moving field of cancer research. Here, once again, outstanding and original reviews are presented on a variety of topics, including nitric oxide-induced apoptosis in tumor cells, detection of minimal residual disease, immunity to oncogenetic human papillomavirus, and modeling prostate cancer in the mouse.
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Contribution of AZAPType Arf GAPs to Cancer Cell Migration and Invasion
Role and Regulation of Human Tumor Suppressor SUFU in Hedgehog Signaling
FAK Expression Regulation and Therapeutic Potential
Adhesion Proteins Meet Receptors A Common Theme?
The Six Family of Homeobox Genes in Development and Cancer
Mechanisms Regulating the Susceptibility of Hematopoietic Malignancies to GlucocorticoidInduced Apoptosis
IFN Inducibility of Major Histocompatibility Antigens in Tumors
Acad antigen apoptosis apoptotic Arf GAP ASAP1 associated binding c‐Met cancer cells Cancer Res carcinoma CD1d CD4þ CD8þ Cell Biol cell death cell lines cellular Chem Clin complex cytokine disease domain downregulation effect etal ﬁrst focal adhesion kinase function fusion GalCer GC‐induced apoptosis GC‐resistant glucocorticoid receptor glucocorticoid‐induced growth factor GSK3 homeobox human immunodeﬁciency virus hybrids identiﬁed immune activation immune responses Immunol induced infection inﬂuence inhibition inhibitor integrin interaction interferon leukemia ligand lymphocytes lymphoma macrophages mechanisms mediated melanoma metastasis metastatic MHC class mice migration molecules mouse mutations Natl natural killer NKT cells Notch1 nuclear overexpression patients Pawelek peptide phenotype phosphorylation podosomes Proc promoter protein regulation regulatory resistance role signaling pathway Six1 speciﬁc Sufu suppression T‐cell target thymocytes transactivation transcription factor tumor tumor cells tumor immunity type I NKT upregulation viral vitro vivo Wang