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PloS one, ISSN 1932-6203, 04/2013, Volume 8, Issue 4, p. e59431
.... Spermatogonial stem cells and their progeny belong to the class of undifferentiated spermatogonia, a germ cell population found on the basal membrane of the seminiferous tubules... 
VASP | GERMLINE STEM-CELLS | UNDIFFERENTIATED SPERMATOGONIA | PROTEIN | ACTIN | CHEMOATTRACTANT | MULTIDISCIPLINARY SCIENCES | RECEPTOR | HEPARAN-SULFATE | EXPRESSION | CULTURE | Actin Cytoskeleton - metabolism | Stem Cell Niche | Humans | Mice, Inbred C57BL | Actins - metabolism | Glial Cell Line-Derived Neurotrophic Factor Receptors - metabolism | Rats | Male | Stem Cells - cytology | Phosphoproteins - metabolism | Stem Cells - metabolism | Cell Adhesion Molecules - metabolism | Cell Movement - drug effects | Animals | Actin Cytoskeleton - drug effects | Glial Cell Line-Derived Neurotrophic Factor - pharmacology | Stem Cells - drug effects | Mice | Microfilament Proteins - metabolism | Spermatogonia - cytology | Muscle proteins | Stem cells | Gametes | Cell culture | Boyden chamber | Spermatogenesis | Stem cell transplantation | Biology | Neuronal-glial interactions | Proteins | Embryology | Allografts | Actin | Rodents | Cell adhesion | Glial cell line-derived neurotrophic factor | Tubules | Histology | Mammals | Vasodilator-stimulated phosphoprotein | Biological activity | Progeny | Spermatogonia | Cell lines | Cells (biology) | Cytoskeleton | Ligands | Axon guidance | Cell migration | Actin Cytoskeleton | Cell Adhesion Molecules | Actins | Cellular Biology | Stem Cells | Life Sciences | Glial Cell Line-Derived Neurotrophic Factor Receptors | Microfilament Proteins | Phosphoproteins | Glial Cell Line-Derived Neurotrophic Factor | Cell Movement
Journal Article
ACS chemical biology, ISSN 1554-8929, 01/2010, Volume 5, Issue 1, pp. 15 - 34
Controlling cell fate is essential for embryonic development, tissue regeneration, and the prevention of human disease... 
Totipotent cells | Feeder cells | Ectoderm | HEDGEHOG PATHWAY | BIOCHEMISTRY & MOLECULAR BIOLOGY | Mesoderm | SELF-RENEWAL | Multipotent cells | Embryonic stem cells | PLURIPOTENT STEM-CELLS | GROWTH-FACTOR RECEPTOR | IN-VITRO | Induced pluripotent stem cells | Pluripotent cells | COLORECTAL-CANCER | GERMLINE MUTATIONS | TGF-BETA RECEPTOR | Differentiation | GAMMA-SECRETASE | Endoderm | ACTIVATING MUTATIONS | Regenerative Medicine | Cell Differentiation - drug effects | Small Molecule Libraries | Humans | Induced pluripotent stem cells: Pluripotent cells obtained through the reprogramming of differentiated cells. Induced pluripotent stem cells are functionally similar to embryonic stem cells | Multipotent cells: Cells that can give rise to more than one cell type of the body | Reviews | Differentiation: The process by which unspecialized cells acquire specific functions, allowing the generation of complex tissues and organs. Differentiation is frequently controlled by cell signaling pathways and maintained through epigenetic mechanisms | Totipotent cells: Cells that give rise to all differentiated cell types of the body and extraembryonic tissues such as the placenta | Ectoderm: The outer germ layer that gives rise to skin, the nervous system, and sensory organs | Embryonic stem cells: Pluripotent cells derived from embryos that can be propagated in culture | Feeder cells: Cells co-cultured with pluripotent cells to prevent their differentiation. Feeder cells are typically mouse or human embryonic fibroblasts | Endoderm: The inner germ layer that gives rise to respiratory and digestive organs | Pluripotent cells: Cells that can give rise to all differentiated cell types of the body but not extraembryonic tissues | Mesoderm: The middle germ layer that gives rise to muscle, bone, connective tissues, and blood cells
Journal Article
Cell reports (Cambridge), ISSN 2211-1247, 02/2019, Volume 26, Issue 6, pp. 1501 - 1517.e4
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2010, Volume 107, Issue 20, pp. 9222 - 9227
Journal Article
Development (Cambridge), ISSN 0950-1991, 05/2017, Volume 144, Issue 9, pp. 1607 - 1618
During early gonadogenesis, proliferating cells in the coelomic epithelium (CE) give rise to most of the somatic cells in both XX and XY gonads... 
NOTCH | NUMB | Mouse gonad | Cell polarity | Asymmetric cell division | Coelomic epithelium | PROGENITOR CELLS | MOUSE TESTIS | FETAL TESTIS | DEVELOPMENTAL BIOLOGY | DROSOPHILA | XY GONAD | CORTICAL NEUROGENESIS | GERM-CELLS | SEX DETERMINATION | GENE-EXPRESSION | SRY | Embryo, Mammalian - drug effects | Gonads - embryology | Leydig Cells - cytology | LIM-Homeodomain Proteins - metabolism | Receptors, Notch - metabolism | Cell Count | Gonads - drug effects | Gonads - pathology | Male | Receptors, Notch - genetics | Leydig Cells - drug effects | Organogenesis - drug effects | Cell Lineage - drug effects | Embryo, Mammalian - metabolism | Sertoli Cells - drug effects | Cell Differentiation - genetics | Epithelium - embryology | Leydig Cells - metabolism | Sertoli Cells - cytology | Female | Cell Polarity - drug effects | Membrane Proteins - metabolism | Cell Death - drug effects | Asymmetric Cell Division - drug effects | Sertoli Cells - metabolism | Epithelium - metabolism | Membrane Proteins - genetics | Dipeptides - pharmacology | Cells, Cultured | Gene Expression Regulation, Developmental - drug effects | Mutation - genetics | Nerve Tissue Proteins - genetics | Nerve Tissue Proteins - metabolism | Transcription Factors - metabolism | Cell Polarity - genetics | Gonads - metabolism | Phenotype | Animals | Signal Transduction - drug effects | Cell Differentiation - drug effects | Embryo, Mammalian - cytology | Models, Biological | Organogenesis - genetics | Mice | Cell Cycle - drug effects | Numbl protein | Germ cells | Cell fate | Somatic cells | Cell division | Cell lineage | Zebrafish | Polarity | NUMB protein | Epithelium | Cell surface | Gonads | 203 | Stem Cells and Regeneration
Journal Article
Journal Article
PloS one, ISSN 1932-6203, 09/2012, Volume 7, Issue 9, p. e43395
Human mesenchymal stromal/stem cells (MSC) isolated from fetal tissues hold promise for use in tissue engineering applications and cell-based therapies, but their collection is restricted ethically and technically... 
PROGENITOR CELLS | MESENCHYMAL STROMAL CELLS | PLX-PAD | MULTIDISCIPLINARY SCIENCES | CORD BLOOD | MOUSE | C-KIT | BONE | PRIMORDIAL GERM-CELLS | AMNIOTIC-FLUID | EXPRESSION | Fetal Stem Cells - cytology | Fetal Stem Cells - metabolism | Humans | Transplantation, Heterologous | Stage-Specific Embryonic Antigens - genetics | Wound Healing | Skin - injuries | Pregnancy Trimester, First | Pregnancy Trimester, Third | Chorion - cytology | Stem Cell Transplantation | Mesenchymal Stromal Cells - cytology | Stage-Specific Embryonic Antigens - metabolism | Time Factors | Placenta - cytology | Adult | Female | Cell Differentiation | Biomarkers - metabolism | Pluripotent Stem Cells - cytology | Mesenchymal Stromal Cells - metabolism | Mice, Transgenic | Placenta - metabolism | Pluripotent Stem Cells - metabolism | Pregnancy | Animals | Fetal Stem Cells - transplantation | Mice | Chorion - metabolism | Tissue engineering | Growth | Stem cells | Fetus | Skin | Comparative analysis | Bioengineering | Neonates | Germ cells | Mesenchyme | Leukemia | c-Myc protein | Stem cell transplantation | Ontogeny | Myc protein | Gestation | Ethics | Biomedical materials | KLF4 protein | Animal tissues | Cell cycle | Bone marrow | Biocompatibility | Phenotypes | Developmental biology | Fetuses | Wounds | Placenta | Womens health | Morphology | Osteogenesis imperfecta | Kinetics | Pluripotency | Osteogenesis
Journal Article
Stem cell reviews, ISSN 1558-6804, 2018, Volume 14, Issue 4, pp. 510 - 524
Journal Article