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Science, ISSN 0036-8075, 8/2010, Volume 329, Issue 5995, pp. 1078 - 1081
Journal Article
Small, ISSN 1613-6810, 11/2018, Volume 14, Issue 48, pp. 1870232 - n/a
As a powerful strategy to determine cell fate, cell electrospinning has emerged as a method to encapsulate cells directly into micro/nanofibers. In article... 
cell electrospinning | tissue engineering | cell‐laden fibers | cell alignment | muscle | Muscles | Anisotropy | Electrospinning | Nanofibers | Viability | Morphology
Journal Article
Science, ISSN 0036-8075, 7/2005, Volume 309, Issue 5732, pp. 314 - 317
Bone marrow stromal cells (MSCs) have great potential as therapeutic agents. We report a method for inducing skeletal muscle lineage cells from human and rat... 
Skeletal muscle satellite cells | Artificial satellites | Stromal cells | Neuroglia | Stem cells | Cell lines | Muscles | Stem cell transplantation | Reports | Transplantation | Cell transplantation | SKELETAL-MUSCLE | REGENERATION | MULTIDISCIPLINARY SCIENCES | MYOGENIC SPECIFICATION | SATELLITE CELLS | QUIESCENT | DIFFERENTIATION | REGULATORY GENE | EXPRESSION | MESENCHYMAL STEM-CELLS | Stromal Cells - transplantation | Cell Proliferation | Humans | Fibroblast Growth Factor 2 - pharmacology | PAX7 Transcription Factor | Bone Marrow Cells - physiology | Gene Expression Profiling | Stem Cells - cytology | Muscle, Skeletal - cytology | Cell Fusion | Transfection | Bone Marrow Transplantation | Mice, Inbred mdx | Satellite Cells, Skeletal Muscle - physiology | Cell Differentiation | Muscular Dystrophy, Duchenne - therapy | Bone Marrow Cells - cytology | Cell Separation | Colforsin - pharmacology | Satellite Cells, Skeletal Muscle - cytology | Cells, Cultured | Rats | Platelet-Derived Growth Factor - pharmacology | Muscle Cells - cytology | Cell Lineage | Regeneration | Animals | Homeodomain Proteins - analysis | Mice, Nude | Neuregulins - pharmacology | Muscle Proteins - analysis | Muscle Development - genetics | Muscle Fibers, Skeletal - cytology | Stem Cells - physiology | Mice | Stromal Cells - physiology | Muscular Diseases - therapy | Stromal Cells - cytology | Parkinson's disease | Muscle diseases | Dystonia | Research | Hematopoietic stem cells | Cells | Bone marrow | Muscular system | Transplants & implants | Medical disorders
Journal Article
PLoS ONE, ISSN 1932-6203, 12/2012, Volume 7, Issue 12, p. e52787
Murine and human iPSC-NS/PCs (induced pluripotent stem cell-derived neural stem/progenitor cells) promote functional recovery following transplantation into... 
FIBERS | MULTIDISCIPLINARY SCIENCES | MOUSE MODEL | EXPRESSION PROFILE | GENE-EXPRESSION | FETAL-BRAIN | STEM/PROGENITOR CELLS | PLURIPOTENCY | GENERATION | GROWTH-FACTOR | TRANSPLANTATION | Humans | Induced Pluripotent Stem Cells - secretion | Motor Neurons - pathology | Recovery of Function | Spinal Cord Injuries - pathology | Microglia - physiology | Spinal Cord - pathology | Neural Stem Cells - transplantation | Female | Cell Differentiation | Calcitonin Gene-Related Peptide - metabolism | Spinal Cord Injuries - therapy | Hand Strength | Induced Pluripotent Stem Cells - physiology | Nerve Growth Factors - secretion | Callithrix | Cell Survival | Induced Pluripotent Stem Cells - transplantation | Cells, Cultured | Neural Stem Cells - physiology | Nerve Regeneration | Spinal Cord - blood supply | Demyelinating Diseases - prevention & control | Motor Neurons - metabolism | Locomotion | Animals | Neural Stem Cells - secretion | Cicatrix - pathology | Spinal Cord - physiopathology | Cell Transformation, Neoplastic - pathology | Neovascularization, Physiologic | Stem Cell Transplantation - adverse effects | Transplantation | Spinal cord injuries | RNA | Stem cells | Cell culture | Spinal cord | Recovery of function | Stem cell transplantation | Spinal cord injury | Bone surgery | Recovery | Proteins | Angiogenesis | Allografts | Demyelination | Rodents | Fibroblasts | Primates | Physiology | Injuries | Injury analysis | Cloning | Regrowth | Attorneys | Tumorigenicity | Neurotrophic factors | Gene expression | Polymerase chain reaction | Medicine | Orthopedics | Cells (biology) | Neural stem cells | Skin | Laboratory animals | Human behavior | Pluripotency
Journal Article
Science, ISSN 0036-8075, 9/2005, Volume 309, Issue 5743, pp. 2064 - 2067
Muscle satellite cells contribute to muscle regeneration. We have used a mouse line to directly isolate (Pax3)(green fluorescent protein)-expressing muscle... 
Skeletal muscle satellite cells | Cytometry | Artificial satellites | B lymphocytes | Muscles | Cultured cells | Reports | Progenitor cells | Cells | Skeletal muscle | Tissue grafting | STEM-CELLS | MYOGENESIS | MULTIDISCIPLINARY SCIENCES | M-CADHERIN | QUIESCENT | MYOBLAST TRANSPLANTATION | FATE | EXPRESSION | CD34 | MDX MICE | Antigens, CD34 - analysis | Dystrophin - biosynthesis | PAX7 Transcription Factor | DNA-Binding Proteins - analysis | Muscle Fibers, Skeletal - metabolism | Muscle, Skeletal - cytology | Stem Cell Transplantation | Muscle Development | Flow Cytometry | Mice, Inbred mdx | Satellite Cells, Skeletal Muscle - physiology | PAX3 Transcription Factor | Green Fluorescent Proteins - analysis | Homeodomain Proteins - biosynthesis | Cell Separation | Paired Box Transcription Factors | Satellite Cells, Skeletal Muscle - cytology | Cells, Cultured | Transcription Factors - biosynthesis | Muscle, Skeletal - physiology | Regeneration | Satellite Cells, Skeletal Muscle - transplantation | Animals | Homeodomain Proteins - analysis | Mice, Nude | Mice | Transcription Factors - analysis | Diaphragm | DNA-Binding Proteins - biosynthesis | Research | Analysis | Proteins | Cell culture | Muscular system | Rodents | Antigens, CD34 | Green Fluorescent Proteins | Muscle Fibers | Homeodomain Proteins | Transcription Factors | Muscle, Skeletal | Dystrophin | Satellite Cells, Skeletal Muscle | DNA-Binding Proteins
Journal Article
The Journal of Cell Biology, ISSN 0021-9525, 5/2002, Volume 157, Issue 5, pp. 851 - 864
Three populations of myogenic cells were isolated from normal mouse skeletal muscle based on their adhesion characteristics and proliferation behaviors.... 
Skeletal muscle satellite cells | Stem cells | Multipotent stem cells | Muscles | Cultured cells | Transplantation | Cells | Hematopoietic stem cells | Cell transplantation | Skeletal muscle | Mdx mice | Muscle-derived stem cells (MDSC) | Satellite cells | Dystrophin | MDX MOUSE | dystrophin | IMMUNOSUPPRESSIVE TREATMENT | CELL BIOLOGY | muscle-derived stem cells (MDSC) | cell transplantation | SKELETAL-MUSCLE | IN-VITRO | MYOBLAST TRANSFER THERAPY | mdx mice | HISTOCOMPATIBILITY COMPLEX ANTIGENS | DUCHENNE MUSCULAR-DYSTROPHY | GENE-THERAPY | MYOGENIC PROGENITORS | satellite cells | Stem Cells - immunology | Vascular Endothelial Growth Factor A | Vascular Endothelial Growth Factors | Endothelial Growth Factors - pharmacology | Stem Cells - cytology | Muscle, Skeletal - cytology | Muscular Dystrophy, Animal - pathology | CD4-Positive T-Lymphocytes - immunology | Stem Cell Transplantation | Dystrophin - physiology | Muscle, Skeletal - immunology | Mice, Inbred mdx | Lymphokines - pharmacology | Cell Differentiation - physiology | Cell Separation | Mice, Inbred C57BL | Hematopoietic Stem Cell Transplantation | Nerve Growth Factor - pharmacology | Muscle, Skeletal - physiology | Regeneration - physiology | Cell Division - drug effects | Cell Division - physiology | Animals | Cell Differentiation - drug effects | Biomarkers | Muscle Fibers, Skeletal - cytology | Mice | CD8-Positive T-Lymphocytes - immunology | In Vitro Techniques | Cell research | Striated muscle | Analysis | muscle-derived stem cells (MDSC); satellite cells; cell transplantation; dystrophin; mdx mice
Journal Article
The Journal of Cell Biology, ISSN 0021-9525, 10/2002, Volume 159, Issue 1, pp. 123 - 134
Skeletal muscle contains myogenic progenitors called satellite cells and muscle-derived stem cells that have been suggested to be pluripotent. We further... 
Skeletal muscle satellite cells | Artificial satellites | Stem cells | Cell lines | Muscles | Muscle fibers | Cellular differentiation | Cells | Hematopoietic stem cells | Myoblasts | Satellite cell | Hematopoiesis | Pax7 | Sca-1 | Stem cell | PROGENITORS | REGENERATION | MOUSE | SATELLITE CELLS | TRANSPLANTATION | CELL BIOLOGY | hematopoiesis | satellite cell | stem cell | DYSTROPHIN | HEMATOPOIETIC STEM-CELLS | DIFFERENTIATION | EXPRESSION | LINEAGE | Leukocyte Common Antigens - metabolism | Coculture Techniques | Homeodomain Proteins - metabolism | PAX7 Transcription Factor | Muscle, Skeletal - cytology | Recombinant Fusion Proteins - metabolism | Myoblasts, Skeletal - cytology | Muscle Development | Flow Cytometry | Myoblasts, Skeletal - physiology | Muscle Proteins - metabolism | Satellite Cells, Skeletal Muscle - physiology | Hematopoietic Stem Cells - physiology | Antigens, Ly - metabolism | Membrane Proteins - metabolism | Cell Differentiation - physiology | Genes, Reporter | DNA-Binding Proteins | Cell Separation | Satellite Cells, Skeletal Muscle - cytology | Trans-Activators | Cells, Cultured | Cell Transplantation | Mice, Transgenic | Muscle, Skeletal - physiology | Myogenic Regulatory Factor 5 | Transcription Factors - genetics | Mice, SCID | Homeodomain Proteins - genetics | Muscle Proteins - genetics | Transcription Factors - metabolism | Animals | Hematopoietic Stem Cells - cytology | Mice | MyoD Protein | Cytology | Physiological aspects | Genetic aspects | Research | Gene expression | Myogenesis | stem cell; satellite cell; Pax7; hematopoiesis; Sca-1
Journal Article
STEM CELLS, ISSN 1066-5099, 08/2017, Volume 35, Issue 8, pp. 1958 - 1972
Hippo pathway downstream effectors Yap and Taz play key roles in cell proliferation and regeneration, regulating gene expression especially via Tead... 
Yap | Satellite cells | Tead | Taz | Muscle stem cells | YES-ASSOCIATED PROTEIN | PROGENITOR CELLS | ORGAN SIZE CONTROL | REGENERATION | CELL & TISSUE ENGINEERING | CELL BIOLOGY | WW DOMAIN | AMPK-MEDIATED REGULATION | MYOGENIC DIFFERENTIATION | ONCOLOGY | PATHWAY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | EMBRYONAL RHABDOMYOSARCOMA | HEMATOLOGY | Cell Proliferation | Satellite Cells, Skeletal Muscle - cytology | Gene Expression Regulation | Satellite Cells, Skeletal Muscle - metabolism | Stem Cells - cytology | Muscle Fibers, Skeletal - metabolism | Muscle, Skeletal - cytology | Phosphoproteins - metabolism | Stem Cells - metabolism | Mice, Knockout | Cell Differentiation - genetics | Cell Fusion | Feedback, Physiological | Myoblasts - metabolism | Animals | Wnt Signaling Pathway - genetics | Regeneration - genetics | Myoblasts - cytology | Muscle Development - genetics | Muscle Fibers, Skeletal - cytology | Adaptor Proteins, Signal Transducing - metabolism | Protein-Serine-Threonine Kinases - metabolism | Muscles | DNA microarrays | Genetic transcription | DNA binding proteins | Analysis | Stem cells | Cell proliferation | Transcription factors | Wnt protein | Destruction | Genes | Switches | Stem cell transplantation | Proteins | Rodents | Talking | Active satellites | siRNA | Gene expression | Myogenesis | Skeletal muscle | Mutants | Myoblasts | Yes-associated protein | Regeneration | Musculoskeletal system | Ribonucleic acids | Cells (biology) | Effectors | Cytoskeleton | Mice | Differentiation | Adult Stem Cells | Muscle Regeneration | Cell Signaling | Tissue‐Specific Stem Cells | Muscle Stem Cells | Satellite Cells
Journal Article
The Journal of Cell Biology, ISSN 0021-9525, 1/2006, Volume 172, Issue 3, pp. 433 - 440
Journal Article