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2016, 1, Devices, circuits, and systems, ISBN 9781482256123, Volume 52, xxiv, 270
A significant portion of biomedical applications necessitates the establishment of an interface between the cells of the patient and the components of the... 
Tissue Engineering | Biomedical Engineering | Circuits & Devices | Biomaterials | Cell interaction | Biological interfaces | Biomedical materials
Book
2011, 1. Aufl., ISBN 9780470669808, xviii, 436
The microenvironment in which a tumor originates plays a critical role in its initiation and progression. Tumor Microenvironmentreviews the importance of tumor... 
Carcinogenesis | Cancer cells
Book
2016, Advances in experimental medicine and biology, ISBN 9783319266640, Volume 899
Web Resource
2016, Methods in molecular biology, ISBN 9781493938018, Volume 1458
Web Resource
2016, Advances in experimental medicine and biology, ISBN 9783319420233, Volume 936.
Web Resource
2016, Advances in experimental medicine and biology, ISBN 9783319420233, Volume 936.
Web Resource
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 2014, Volume 111, Issue 2, pp. 711 - 716
Journal Article
Journal Article
Clinical Cancer Research, ISSN 1078-0432, 10/2014, Volume 20, Issue 19, pp. 5064 - 5074
Journal Article
Development, ISSN 0950-1991, 01/2011, Volume 138, Issue 2, pp. 123 - 132
Journal Article
Cancer research, ISSN 0008-5472, 12/2017, Volume 77, Issue 23, pp. 6667 - 6678
Ligation of PD-1 in the tumor microenvironment is known to inhibit effective adaptive anti-tumor immunity. Blockade of PD-1 in humans has resulted in... 
checkpoint | tumor microenvironment
Journal Article
Cell Death and Differentiation, ISSN 1350-9047, 05/2011, Volume 18, Issue 5, pp. 829 - 840
Malignant gliomas are lethal cancers that display cellular hierarchies with cancer stem cells at the apex. Glioma stem cells (GSCs) are not uniformly... 
pH | glioma | cancer stem cell | acidic microenvironment | BIOCHEMISTRY & MOLECULAR BIOLOGY | ACIDOSIS | HISTONE DEMETHYLASES | TUMOR ANGIOGENESIS | CANCER | HYPOXIA-INDUCIBLE FACTORS | CELL BIOLOGY | GLIOBLASTOMA | MICROENVIRONMENT | EXTRACELLULAR PH | EXPRESSION | ENDOTHELIAL GROWTH-FACTOR | Neoplasm Transplantation | Homeodomain Proteins - metabolism | Humans | Brain Neoplasms - pathology | Gene Expression Regulation, Neoplastic | Stress, Physiological | Vascular Endothelial Growth Factor A - metabolism | Tumor Microenvironment - physiology | Vascular Endothelial Growth Factor A - genetics | Brain Neoplasms - metabolism | Glioma - metabolism | Basic Helix-Loop-Helix Transcription Factors - metabolism | Neoplastic Stem Cells - metabolism | Hypoxia-Inducible Factor 1, alpha Subunit - metabolism | Angiogenesis Inducing Agents - metabolism | Glioma - pathology | Biomarkers, Tumor - metabolism | Neoplastic Stem Cells - pathology | Antigens, Differentiation - metabolism | Transcription, Genetic | Basic Helix-Loop-Helix Transcription Factors - genetics | Nanog Homeobox Protein | Serpins - genetics | Hypoxia-Inducible Factor 1, alpha Subunit - genetics | Oligodendrocyte Transcription Factor 2 | Nerve Tissue Proteins - metabolism | Phenotype | Glucose Transporter Type 1 - genetics | Octamer Transcription Factor-3 - metabolism | Acidosis | Hydrogen-Ion Concentration | Oxygen | Brain tumors | Paracrine signalling | Malignancy | pH effects | Stress | Angiogenesis | Glioma | Glioma cells | Stem cells | Hypoxia | Microenvironments | Tumors | Index Medicus | Original Paper
Journal Article
Journal Article
by Dey, P
04/2012
The drama of cancer is not the solo performance of the malignant cells. Microenvironment of the tumor has significant contribution in carcinogenesis. Recent... 
microenvironment | tumor | stroma | Carcinogenesis | epigenetics
Web Resource
Cancer Cell, ISSN 1535-6108, 05/2017, Volume 31, Issue 5, pp. 711 - 723.e4
Effector T cells have the capability of recognizing and killing cancer cells. However, whether tumors can become immune resistant through exclusion of effector... 
T cell-inflamed tumor microenvironment | non-T cell-inflamed tumor microenvironment | immunotherapy resistance | immune escape | adoptive T cell transfer | METASTATIC MELANOMA | RESPONSES | IMMUNITY | MECHANISM | ONCOLOGY | CANCER REGRESSION | REJECTION | ANTIGENS | MICE | BLOCKADE | EXPRESSION | CELL BIOLOGY | Chemotaxis, Leukocyte | Tumor Escape | Basic-Leucine Zipper Transcription Factors - metabolism | Cell Proliferation | Dendritic Cells - immunology | Tumor Microenvironment | T-Lymphocytes - transplantation | Antigens, CD - metabolism | Repressor Proteins - deficiency | T-Lymphocytes - metabolism | Time Factors | Basic-Leucine Zipper Transcription Factors - deficiency | CD8-Positive T-Lymphocytes - metabolism | Dendritic Cells - metabolism | Repressor Proteins - metabolism | Melanoma - metabolism | Skin Neoplasms - pathology | Immunotherapy, Adoptive - methods | Signal Transduction | Skin Neoplasms - immunology | Skin Neoplasms - therapy | Repressor Proteins - genetics | Genotype | Integrin alpha Chains - metabolism | Basic-Leucine Zipper Transcription Factors - genetics | Melanoma - pathology | Tumor Burden | beta Catenin - metabolism | Mice, Knockout | Skin Neoplasms - metabolism | Phenotype | Animals | Melanoma - immunology | Chemokine CXCL9 - metabolism | Cell Line, Tumor | Immunologic Memory | T-Lymphocytes - immunology | CD8-Positive T-Lymphocytes - immunology | Melanoma - therapy | Chemokine CXCL10 - metabolism | Dendritic cells | T cells | Cancer | Immunotherapy | Index Medicus | Adoptive T cell transfer
Journal Article
Cancer Cell, ISSN 1535-6108, 09/2017, Volume 32, Issue 3, pp. 324 - 341.e6
Journal Article