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Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2015, Volume 112, Issue 40, pp. 12516 - 12521
Human pluripotent stem cell-based in vitro models that reflect human physiology have the potential to reduce the number of drug failures in clinical trials and... 
Organoid | Toxicology | Differentiation | Tissue engineering | Machine learning | toxicology | tissue engineering | DEVELOPMENTAL NEUROTOXICITY | differentiation | MULTIDISCIPLINARY SCIENCES | INVOLVEMENT | CLASSIFICATION | NEURODEGENERATION | machine learning | CANCER | organoid | IN-VITRO | MICROGLIA | GENE-EXPRESSION | SYSTEMS | BRAIN | Embryonic Stem Cells - metabolism | Microglia - metabolism | Embryonic Stem Cells - cytology | Humans | Brain - growth & development | Support Vector Machine | Neural Stem Cells - cytology | Xenobiotics - pharmacology | Brain - metabolism | Neurogenesis - genetics | Mesenchymal Stromal Cells - cytology | Xenobiotics - classification | Gene Expression Regulation, Developmental | Cell Differentiation | Neurogenesis - drug effects | Culture Media, Serum-Free - pharmacology | Gene Ontology | Polyethylene Glycols - pharmacology | Microglia - cytology | Mesenchymal Stromal Cells - drug effects | Brain - cytology | Pluripotent Stem Cells - cytology | Tissue Engineering - methods | Microglia - drug effects | Endothelial Cells - metabolism | Cells, Cultured | Neural Stem Cells - drug effects | Mesenchymal Stromal Cells - metabolism | Cell Communication - genetics | Macrophages - cytology | Pluripotent Stem Cells - metabolism | Macrophages - metabolism | Embryonic Stem Cells - drug effects | Endothelial Cells - cytology | Models, Biological | Pluripotent Stem Cells - drug effects | Cell Communication - drug effects | Macrophages - drug effects | Hydrogels - pharmacology | Neural Stem Cells - metabolism | Endothelial Cells - drug effects | Neurotoxicity | Stem cells | Gene expression | Biological assays | Bioinformatics | Artificial intelligence | Index Medicus | Biological Sciences
Journal Article
PLoS ONE, ISSN 1932-6203, 01/2012, Volume 7, Issue 1, pp. e30264 - e30264
NK cells have therapeutic potential for a wide variety of human malignancies. However, because NK cells expand poorly in vitro, have limited life spans in... 
MOUSE NK CELLS | CELLULAR CYTOTOXICITY ADCC | ADOPTIVE TRANSFER | IN-VITRO EXPANSION | BIOLOGY | PERIPHERAL-BLOOD | ACUTE MYELOID-LEUKEMIA | CANCER-IMMUNOTHERAPY | CLINICAL-GRADE | CD8(+) T-CELLS | BLOOD MONONUCLEAR-CELLS | Cell Proliferation | Artificial Cells - immunology | Coculture Techniques | Humans | Antibody-Dependent Cell Cytotoxicity - immunology | Gene Expression Profiling | Interleukin-15 - immunology | Interleukins - metabolism | Flow Cytometry | T-Lymphocytes - metabolism | U937 Cells | Interleukins - immunology | Receptors, KIR - metabolism | Killer Cells, Natural - immunology | Membrane Proteins - metabolism | Telomere - genetics | Cell Line | Antigen-Presenting Cells - metabolism | Immunotherapy, Adoptive - methods | Cells, Cultured | Immunophenotyping | Membrane Proteins - immunology | Antigen-Presenting Cells - immunology | Artificial Cells - metabolism | Interleukin-15 - metabolism | K562 Cells | Cell Line, Tumor | T-Lymphocytes - immunology | Killer Cells, Natural - metabolism | Receptors, KIR - immunology | Antigens | Fc receptors | Telomeres | Killer cells | Health aspects | Immunotherapy | Cell proliferation | Lymphocyte receptors | Cell culture | Pediatrics | Senescence | Transplants & implants | Transcription | Toxicity | Adoptive immunotherapy | Erythrocytes | Multiple myeloma | Science | Clinical trials | Cytotoxicity | Leukocytes | Cancer therapies | NKG2 antigen | Cell growth | Lymphocytes | Interleukin 21 | Killer cell immunoglobulin-like receptors | Biocompatibility | Natural killer cells | Expansion | Killing | Cytomegalovirus | Cytokines | Dendritic cells | Secretion | Blood cells | T cell receptors | Tumor cell lines | Gene expression | Interleukin 15 | White blood cells | CD16 antigen | Biopsy | Antigen-presenting cells | Human performance | Ligands | Genetic engineering | Index Medicus
Journal Article
The Journal of Cell Biology, ISSN 0021-9525, 9/2010, Volume 190, Issue 5, pp. 867 - 879
Skeletal muscle satellite cells are adult stem cells responsible for postnatal skeletal muscle growth and regeneration. Paired-box transcription factor Pax7... 
Skeletal muscle satellite cells | Artificial satellites | Cell growth | MicroRNA | Stem cells | Cell lines | Muscles | Cellular differentiation | Skeletal muscle | Myoblasts | PROGENITOR CELLS | RNA INTERFERENCE | MYOGENESIS | REGENERATION | EMBRYONIC STEM-CELLS | HEART-FAILURE | SELF-RENEWAL | FATE DETERMINATION | EXPRESSION | PROGRESSION | CELL BIOLOGY | Paired Box Transcription Factors - genetics | Up-Regulation | Cell Proliferation | MicroRNAs - metabolism | PAX7 Transcription Factor - metabolism | Stem Cells - cytology | Muscle, Skeletal - cytology | Stem Cells - metabolism | Cell Differentiation - genetics | Myoblasts - metabolism | Regeneration - genetics | Satellite Cells, Skeletal Muscle - physiology | Cell Differentiation - physiology | Cell Line | Muscle, Skeletal - growth & development | PAX7 Transcription Factor - physiology | Muscle Development - physiology | Satellite Cells, Skeletal Muscle - cytology | Cells, Cultured | Satellite Cells, Skeletal Muscle - metabolism | Muscle, Skeletal - physiology | Regeneration - physiology | Proteins - genetics | Animals | Proteins - metabolism | Muscle Development - genetics | Mice | MicroRNAs - genetics | Paired Box Transcription Factors - metabolism | Muscle cells | Research | RNA | Studies | Proteins | Musculoskeletal system | Survival analysis | Genes | Cells | Index Medicus
Journal Article
Endocrinology, ISSN 0013-7227, 10/2013, Volume 154, Issue 10, pp. 3552 - 3564
Journal Article
Journal Article
Immunity, ISSN 1074-7613, 09/2016, Volume 45, Issue 3, pp. 597 - 609
Journal Article
Journal Article
Biomaterials, ISSN 0142-9612, 2013, Volume 34, Issue 18, pp. 4404 - 4417
Abstract In bone tissue engineering, a combination of biomimetic nanofibrous scaffolds with renewable stem cells has recently emerged as a new strategy for... 
Advanced Basic Science | Dentistry | Cell proliferation | BMP signaling pathway | Integrin | Nanofibrous hydroxyapatite/chitosan | Cell adhesion | Mesenchymal stem cells | MATRIX | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | NETWORKS | INDUCTION | MESENCHYMAL STEM-CELLS | NANOCOMPOSITES | REPAIR | OSTEOBLASTS | DIFFERENTIATION | PROTEINS | CALVARIAL DEFECTS | Bone Regeneration - genetics | Alkaline Phosphatase - metabolism | Integrins - genetics | Integrins - metabolism | Tissue Scaffolds - chemistry | Extracellular Matrix - genetics | Bone Morphogenetic Proteins - metabolism | Mesenchymal Stromal Cells - cytology | Mesenchymal Stromal Cells - ultrastructure | Skull - pathology | Durapatite - pharmacology | Chitosan - pharmacology | Bone Marrow Cells - drug effects | Female | Bone Morphogenetic Proteins - genetics | Osteogenesis - genetics | Nanofibers - chemistry | Bone Regeneration - drug effects | Mesenchymal Stromal Cells - drug effects | Nanofibers - ultrastructure | Implants, Experimental | Bone Marrow Cells - cytology | Cell Separation | Osteocalcin - metabolism | Extracellular Matrix - drug effects | Osteogenesis - drug effects | Membranes, Artificial | Mesenchymal Stromal Cells - metabolism | Rats | Smad Proteins - genetics | Signal Transduction - genetics | Rats, Sprague-Dawley | Bone Marrow Cells - ultrastructure | Cell Shape - drug effects | Gene Expression Regulation - drug effects | Radiography | Animals | Signal Transduction - drug effects | Skull - diagnostic imaging | Cell Proliferation - drug effects | Smad Proteins - metabolism | Tissue engineering | Collagen | Stem cells | Integrins | Index Medicus
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 8/2009, Volume 106, Issue 32, pp. 13383 - 13387
Skeletal muscle stem cells are regulated by Pax3/7. During development Pax3 is required for the maintenance of these cells in the somite and their migration to... 
Skeletal muscle satellite cells | Artificial satellites | MicroRNA | Stem cells | Embryonic stem cells | Cellular differentiation | Embryos | Progenitor cells | Cells | Skeletal muscle | Onset of mouse myogenesis | Satellite cell differentiation | PROGENITOR CELLS | ACTIVATION | onset of mouse myogenesis | MYOGENESIS | MULTIDISCIPLINARY SCIENCES | TRANSCRIPTION | SATELLITE CELLS | satellite cell differentiation | CRE | GENERATION | DIFFERENTIATION | PROMOTES | PROGRESSION | Paired Box Transcription Factors - genetics | Humans | Molecular Sequence Data | 3' Untranslated Regions - metabolism | MicroRNAs - metabolism | Stem Cells - cytology | Muscle, Skeletal - cytology | Stem Cells - metabolism | Embryo, Mammalian - metabolism | Somites - embryology | Gene Expression Regulation, Developmental | Base Sequence | Cell Differentiation | Somites - metabolism | Cell Line | PAX3 Transcription Factor | Satellite Cells, Skeletal Muscle - cytology | Mice, Transgenic | Satellite Cells, Skeletal Muscle - metabolism | Muscle, Skeletal - physiology | Regeneration | Animals | Embryo, Mammalian - cytology | Mice | MicroRNAs - genetics | Paired Box Transcription Factors - metabolism | Physiological aspects | Muscles | Genetic aspects | Research | Gene expression | Myogenesis | Proteins | Musculoskeletal system | Cell culture | Embryology | Cell adhesion & migration | Index Medicus | Paired Box Transcription Factors | Embryo, Mammalian | Somites | Stem Cells | Life Sciences | Immunology | MicroRNAs | Muscle, Skeletal | 3' Untranslated Regions | Satellite Cells, Skeletal Muscle | Biological Sciences
Journal Article