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Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2014, Volume 111, Issue 34, pp. 12426 - 12431
Pluripotency can be induced in somatic cells by overexpressing transcription factors, including POU class 5 homeobox 1 (OCT3/4... 
Phenotypes | Induced pluripotent stem cells | Somatic cells | Stem cells | Retroviridae | Embryonic stem cells | Pluripotent stem cells | Cellular differentiation | Cells | Mesenchymal stem cells | Epigenetics | Retrotransposon | Evolution | NONCODING RNA-ROR | ROADBLOCK | DNA METHYLATION | MULTIDISCIPLINARY SCIENCES | TRANSPOSABLE ELEMENTS | evolution | INDUCTION | epigenetics | IPS CELLS | PLURIPOTENT STEM-CELLS | PATHWAY | HUMAN FIBROBLASTS | retrotransposon | EXPRESSION | Octamer Transcription Factor-3 - physiology | Endogenous Retroviruses - physiology | Embryonic Stem Cells - cytology | Epigenesis, Genetic | Humans | Endogenous Retroviruses - genetics | Pluripotent Stem Cells - virology | Gene Knockdown Techniques | Octamer Transcription Factor-3 - genetics | Cell Differentiation - genetics | RNA, Viral - antagonists & inhibitors | RNA, Viral - genetics | SOXB1 Transcription Factors - genetics | Embryonic Stem Cells - virology | SOXB1 Transcription Factors - physiology | Induced Pluripotent Stem Cells - cytology | Cell Differentiation - physiology | Cellular Reprogramming - genetics | Gene Expression | Pluripotent Stem Cells - cytology | Induced Pluripotent Stem Cells - physiology | Induced Pluripotent Stem Cells - virology | Pluripotent Stem Cells - physiology | Kruppel-Like Transcription Factors - physiology | RNA, Long Noncoding - genetics | Embryonic Stem Cells - physiology | RNA, Long Noncoding - antagonists & inhibitors | Kruppel-Like Transcription Factors - genetics | Cellular Reprogramming - physiology | Epigenetic inheritance | Transcription factors | Retroviruses | Physiological aspects | Genetic research | Genetic aspects | Research | Cell differentiation | Gene expression | Virus research | Biological Sciences
Journal Article
Cell Death and Differentiation, ISSN 1350-9047, 08/2013, Volume 20, Issue 8, pp. 1116 - 1123
Journal Article
PloS one, ISSN 1932-6203, 2016, Volume 11, Issue 1, pp. e0147198 - e0147198
.... Specifically, for skeletal muscle regeneration several models are reported in the literature, yet the relative impact on muscle physiology and the distinct cells types have not been extensively characterised... 
SKELETAL-MUSCLE | SATELLITE CELL NICHE | STEM-CELLS | ADULT MUSCLE | MACROPHAGES | MYOGENESIS | MULTIDISCIPLINARY SCIENCES | ENDOTHELIAL-CELLS | SELF-RENEWAL | PROLIFERATION | TEMPLATE DNA STRANDS | Barium Compounds - toxicity | Chlorides - toxicity | Muscle, Skeletal - injuries | Cytokines - physiology | Necrosis | Muscle Development | Cold Injury - pathology | Muscle, Skeletal - drug effects | Satellite Cells, Skeletal Muscle - physiology | Freezing - adverse effects | Models, Animal | Myoblasts - physiology | Elapid Venoms - toxicity | Macrophages - physiology | Green Fluorescent Proteins - analysis | Vascular Endothelial Growth Factor Receptor-2 - analysis | Mice, Inbred C57BL | Cobra Cardiotoxin Proteins - toxicity | Mice, Transgenic | Muscle, Skeletal - physiology | Regeneration - physiology | Animals | Fibrosis | Stem Cells - physiology | Mice | Muscle, Skeletal - pathology | Neovascularization, Physiologic | Regeneration - immunology | Cold Injury - physiopathology | Cycles | Barium | Animal models | Transplants & implants | Transgenic | Stem cell transplantation | Confocal microscopy | Infections | Confocal | Epidemiology | Regeneration (physiology) | Cell growth | Histopathology | Rodents | Cell cycle | Gangrene | Basal lamina | Injuries | Immune system | Cytokines | Tissue engineering | Organs | Muscles | Blood vessels | Cell division | Inflammation | Skeletal muscle | Barium chloride | Regeneration | Musculoskeletal system | Microscopy | Experimental design | Stem cells | Infiltration | Chemokines | Index Medicus | Green Fluorescent Proteins | Cobra Cardiotoxin Proteins | Macrophages | Cellular Biology | Vascular Endothelial Growth Factor Receptor-2 | Freezing | Stem Cells | Life Sciences | Cold Injury | Barium Compounds | Chlorides | Myoblasts | Elapid Venoms | Muscle, Skeletal | Satellite Cells, Skeletal Muscle
Journal Article
Journal Article
Cell reports (Cambridge), ISSN 2211-1247, 2016, Volume 16, Issue 10, pp. 2576 - 2592
.... Here, we describe the derivation and characterization, including single-cell RNA-seq, of neocortical and spinal cord neuroepithelial stem (NES... 
NEURAL PROGENITORS | LONG-TERM | HUMAN BRAIN | ADAPTER | CENTRAL-NERVOUS-SYSTEM | INFECTION | MICE | BINDING KINASE 1 | ORGANOIDS | INNATE IMMUNITY | CELL BIOLOGY | Neocortex - pathology | Neurons - pathology | Transcription, Genetic - drug effects | Brain - embryology | Neuroglia - ultrastructure | Neuroglia - pathology | Humans | Brain - virology | Centrosome - drug effects | Gene Expression Profiling | Microcephaly - virology | Neural Stem Cells - ultrastructure | Zika Virus Infection - virology | Neural Stem Cells - immunology | Neuroepithelial Cells - immunology | Neuroprotective Agents - pharmacology | Spinal Cord - pathology | Microcephaly - pathology | Neuroepithelial Cells - virology | Nucleosides - pharmacology | Fetus - virology | Cell Death - drug effects | Phosphorylation - drug effects | Neurons - drug effects | Protein-Serine-Threonine Kinases - metabolism | Zika Virus - pathogenicity | Proto-Oncogene Proteins - metabolism | Zika Virus - ultrastructure | Neurons - virology | Virus Replication - drug effects | Neuroepithelial Cells - ultrastructure | Immunity, Innate - drug effects | Zika Virus Infection - pathology | Neural Stem Cells - virology | Zika Virus - physiology | Zika Virus - drug effects | Mitochondria - metabolism | Mitochondria - drug effects | Receptor Protein-Tyrosine Kinases - metabolism | Neural Stem Cells - enzymology | Centrosome - metabolism | Mitosis - drug effects | Brain - pathology | Protein Kinase Inhibitors - pharmacology | Neuroglia - virology | Neuroepithelial Cells - drug effects | Neurons/pathology | Zika Virus/pathogenicity | Mitochondria/metabolism | Virus Replication/drug effects | Microcephaly/pathology | Neurons/drug effects | Protein-Serine-Threonine Kinases/metabolism | Neural Stem Cells/immunology | Neuroglia/ultrastructure | Neuroepithelial Cells/drug effects | Neuroepithelial Cells/virology | Life Sciences | Brain/pathology | Zika Virus/drug effects | Brain/embryology | Mitochondria/drug effects | Fetus/virology | Neocortex/pathology | Neuroglia/pathology | Cell Death/drug effects | Mitosis/drug effects | Transcription, Genetic/drug effects | Nucleosides/pharmacology | Neural Stem Cells/enzymology | Neural Stem Cells/ultrastructure | Neuroepithelial Cells/ultrastructure | Receptor Protein-Tyrosine Kinases/metabolism | Microcephaly/virology | Proto-Oncogene Proteins/metabolism | Neuroprotective Agents/pharmacology | Zika Virus/ultrastructure | Neuroepithelial Cells/immunology | Brain/virology | Immunity, Innate/drug effects | Spinal Cord/pathology | Zika Virus/physiology | Neuroglia/virology | Microbiology and Parasitology | Zika Virus Infection/pathology | Neurons/virology | Zika Virus Infection/virology | Neural Stem Cells/virology | Centrosome/drug effects | Protein Kinase Inhibitors/pharmacology | Centrosome/metabolism | Phosphorylation/drug effects
Journal Article
PLoS ONE, ISSN 1932-6203, 2011, Volume 6, Issue 2, p. e14733
Background: Differentiation of pluripotent stem cells in vitro provides a powerful means to investigate early developmental fates, including hematopoiesis... 
IMMUNOGENICITY | MULTIDISCIPLINARY SCIENCES | EXPANSION | HUMAN FIBROBLASTS | GROWTH-FACTOR | FLT3 LIGAND | APLASTIC-ANEMIA | CULTURES | LINES | Myeloid Cells - cytology | Embryonic Stem Cells - metabolism | Antigens, CD34 - metabolism | Induced Pluripotent Stem Cells - drug effects | Induced Pluripotent Stem Cells - physiology | Humans | Myeloid Cells - physiology | Pluripotent Stem Cells - physiology | Cells, Cultured | Cell Size | Hematopoietic Stem Cells - metabolism | Embryonic Stem Cells - physiology | Cell Lineage - physiology | Animals | Cell Differentiation - drug effects | Hematopoietic Stem Cells - cytology | Pluripotent Stem Cells - drug effects | Culture Media - pharmacology | Hematopoietic Stem Cells - physiology | Myeloid Cells - metabolism | Cell Culture Techniques | Culture Media - chemistry | Culture Media, Serum-Free - pharmacology | Induced Pluripotent Stem Cells - cytology | Cell culture | Flow cytometry | Senescence | Laboratories | Oct-4 protein | Differentiation (biology) | Erythrocytes | Embryo cells | Stem cell transplantation | Leukocytes | Kinases | Assaying | Experiments | Blood | Thrombopoietin | Stem cell factor | Red blood cells | Allografts | Immunology | Cord blood | Hematopoiesis | Rodents | Fibroblasts | Bone marrow | Vascular endothelial growth factor | CD34 antigen | Medical research | Food sources | Colonies | Anemia | Fetuses | Gynecology | Runx1 protein | Gene expression | Erythroid cells | Cell differentiation | Embryos | Obstetrics | Hemopoiesis | Endothelium | White blood cells | Pathology | Chemotherapy | Stem cells | Animal protein | Ligands | Pluripotency
Journal Article
Nature communications, ISSN 2041-1723, 2018, Volume 9, Issue 1, pp. 5153 - 14
Regeneration of complex multi-tissue structures, such as limbs, requires the coordinated effort of multiple cell types... 
MORPHOGENESIS | STEM-CELLS | PROTEIN | MACROPHAGES | MULTIDISCIPLINARY SCIENCES | EXTRACELLULAR-MATRIX | BONE | IDENTIFICATION | EXPRESSION | EPIDERMAL CAP | CARTILAGE | Ambystoma mexicanum - genetics | Immune System - physiology | Fibroblasts - physiology | Myeloid Cells - physiology | Nerve Regeneration - physiology | Transcriptome | Gene Expression Regulation, Developmental - genetics | Gene Expression Profiling | Stem Cells - cytology | Macrophages | Mesenchymal Stem Cells | Extremities - embryology | Animal Experimentation | In Situ Hybridization | Regeneration - genetics | Neurons - physiology | Ambystoma mexicanum - physiology | Cell Differentiation | Extremities - physiology | Gene Expression Regulation, Developmental - physiology | Epidermis - pathology | Extremities - pathology | Cell Lineage | Animals | Sequence Analysis, RNA | Epidermis - physiology | Epidermal Cells | Stem Cells - physiology | Fibroblasts - cytology | Limbs | Mesenchyme | Differentiation (biology) | Data processing | Epidermis | Histology | Ribonucleic acid--RNA | Cell differentiation | Tissues | Progenitor cells | Hemopoiesis | Gene sequencing | Regeneration | Cells (biology) | Stem cells | Epidermis/pathology | Neurons/physiology | Ambystoma mexicanum/genetics | Nerve Regeneration/physiology | Myeloid Cells/physiology | Gene Expression Regulation, Developmental/genetics | Biologi | Natural Sciences | Stem Cells/cytology | Biological Sciences | Immune System/physiology | Fibroblasts/cytology | Bioinformatik och systembiologi | Bioinformatics and Systems Biology | Naturvetenskap | Extremities/embryology | Regeneration/genetics | Utvecklingsbiologi | Developmental Biology
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2011, Volume 108, Issue 19, pp. 7950 - 7955
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