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One or more keywords matched the following items that are connected to Schreiber, Hans
Item TypeName
Concept Tumor Cells, Cultured
Academic Article Footprinting of individual tumors and their variants by constitutive cytokine expression patterns.
Academic Article Immunodominance deters the response to other tumor antigens thereby favoring escape: prevention by vaccination with tumor variants selected with cloned cytolytic T cells in vitro.
Academic Article Point mutation in essential genes with loss or mutation of the second allele: relevance to the retention of tumor-specific antigens.
Academic Article Enhanced eradication of local and distant tumors by genetically produced interleukin-12 and radiation.
Academic Article C-kit+ FcR+ myelocytes are increased in cancer and prevent the proliferation of fully cytolytic T cells in the presence of immune serum.
Academic Article Complementary role of CD4+ T cells and secondary lymphoid tissues for cross-presentation of tumor antigen to CD8+ T cells.
Academic Article A new murine tumor model for studying HLA-A2-restricted anti-tumor immunity.
Academic Article A highly immunogenic tumor transfected with a murine transforming growth factor type beta 1 cDNA escapes immune surveillance.
Academic Article Progression of cancer from indolent to aggressive despite antigen retention and increased expression of interferon-gamma inducible genes.
Academic Article CD40 ligation restores cytolytic T lymphocyte response and eliminates fibrosarcoma in the peritoneum of mice lacking CD4+ T cells.
Academic Article Synergy between T-cell immunity and inhibition of paracrine stimulation causes tumor rejection.
Academic Article Antiproliferative effects exerted by recombinant human tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma) on human pancreatic tumor cell lines.
Academic Article CD4(+) T cells eliminate MHC class II-negative cancer cells in vivo by indirect effects of IFN-gamma.
Academic Article LyP-1-Modified Oncolytic Adenoviruses Targeting Transforming Growth Factor ß Inhibit Tumor Growth and Metastases and Augment Immune Checkpoint Inhibitor Therapy in Breast Cancer Mouse Models.
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  • Tumor Cells Cultured