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Journal of Cell Science, ISSN 0021-9533, 06/2012, Volume 125, Issue 11, pp. 2638 - 2654
Normal mammary morphogenesis involves transitions between simple and multilayered epithelial organizations. We used electron microscopy and molecular markers... 
Breast cancer | Apico-basal polarity | Epithelial morphogenesis | Mammary gland | STEM-CELLS | HUMAN BREAST | FINE-STRUCTURE | 3-DIMENSIONAL CULTURE | E-CADHERIN | GLAND DEVELOPMENT | CELL BIOLOGY | KEY STAGES | IN-VIVO | ADHESION SYSTEM | DUCTAL MORPHOGENESIS | Desmosomes - drug effects | Desmosomes - ultrastructure | Epithelial Cells - drug effects | Extracellular Matrix - metabolism | rac GTP-Binding Proteins - metabolism | Epithelium - ultrastructure | rho-Associated Kinases - antagonists & inhibitors | Mammary Glands, Animal - growth & development | Laminin | rho-Associated Kinases - metabolism | Organoids - ultrastructure | Female | Cell Membrane - metabolism | Cell Polarity - drug effects | Epithelial Cells - cytology | Cell Membrane - drug effects | Amides - pharmacology | Tight Junctions - metabolism | Desmosomes - metabolism | Epithelium - drug effects | Cell Surface Extensions - ultrastructure | Proteoglycans | Epithelium - metabolism | Cell Surface Extensions - metabolism | Myosin-Light-Chain Kinase - metabolism | Tissue Culture Techniques | Extracellular Matrix - drug effects | Organoids - cytology | Epithelial Cells - ultrastructure | Cell Membrane - ultrastructure | Mammary Glands, Animal - cytology | Cell Shape - drug effects | Tight Junctions - ultrastructure | Cell Movement - drug effects | Mammary Glands, Animal - ultrastructure | Animals | Models, Biological | Collagen | Cell Communication - drug effects | Epithelial Cells - enzymology | Organoids - drug effects | Morphogenesis - drug effects | Mice | Pyridines - pharmacology | Drug Combinations
Journal Article
Respiratory Medicine, ISSN 0954-6111, 2005, Volume 99, Issue 4, pp. 429 - 443
Journal Article
Journal of Cellular and Molecular Medicine, ISSN 1582-1838, 11/2011, Volume 15, Issue 11, pp. 2539 - 2551
Induced pluripotent stem cells (iPSC) are generated from fully differentiated somatic cells that were reprogrammed into a pluripotent state. Human iPSC which... 
cardiomyocytes | action potentials | release units | induced pluripotent stem cells | human embryonic stem cells | sarcoplasmic reticulum | caveolae | Human embryonic stem cells | Action potentials | Caveolae | Induced pluripotent stem cells | Sarcoplasmic reticulum | Cardiomyocytes | MEDICINE, RESEARCH & EXPERIMENTAL | Ca2+-release units | FUNCTIONAL-PROPERTIES | CELL BIOLOGY | ORGANIZATION | SMOOTH-MUSCLE | ICLC | JUNCTIONS | DIFFERENTIATION | TELOCYTES | Mitochondria, Heart - ultrastructure | Myocardial Contraction | Embryonic Stem Cells - cytology | Excitation Contraction Coupling | Induced Pluripotent Stem Cells - physiology | Calcium - metabolism | Caveolae - ultrastructure | Humans | Cells, Cultured | Keratinocytes - cytology | Microscopy, Electron | Embryonic Stem Cells - physiology | Endoplasmic Reticulum - ultrastructure | Membrane Potentials | Hair Follicle - metabolism | Sarcoplasmic Reticulum - ultrastructure | Cell Differentiation | Fibroblasts - cytology | Induced Pluripotent Stem Cells - cytology | Myocytes, Cardiac - ultrastructure | Heart | Embryo cells | Ribosomes | Desmosomes | Lipids | Cell adhesion & migration | Mitochondria | Ultrastructure | Fibroblasts | Conflicts of interest | Autografts | Phenotypes | Calcium (intracellular) | Cardiac muscle | Glycogen | Data acquisition systems | Cloning | Keratinocytes | Electron microscopy | Cell differentiation | Mammals | Myofibrils | Transmission electron microscopy | Somatic cells | Stem cells | Plasma membranes | Disks | Software | Fascia | Endoplasmic reticulum | Pluripotency | Calcium ions | Original
Journal Article
Cell and Tissue Research, ISSN 0302-766X, 02/2007, Volume 327, Issue 2, pp. 371 - 384
Transmission electron microscopy was employed to study structural changes in the lantern muscles occurring during the transition from young to adult in the sea... 
Echinoidea | Muscle | Mutable connective tissue | Aristotle's lantern | Sea urchin, Strongylocentrotus nudus (Echinodermata) | Myogenesis | COMATULIDS ANTEDON-MEDITERRANEA | CELLS | ECHINODERMATA | ECHINOIDA | REGENERATION | SYSTEM ORGANIZATION | mutable connective tissue | Strongylocentrotus nudus (Echinodermata) | sea urchin | STICHOPUS-JAPONICUS | CELL BIOLOGY | COMPASS DEPRESSORS | muscle | ULTRASTRUCTURE | myogenesis | MORPHOLOGY | Basement Membrane - ultrastructure | Age Factors | Desmosomes - ultrastructure | Mesentery - ultrastructure | Epithelium - ultrastructure | Muscle, Skeletal - cytology | Cell Movement - physiology | Peritoneum - ultrastructure | Neurons - ultrastructure | Peritoneum - cytology | Connective Tissue Cells - ultrastructure | Epithelial Cells - cytology | Cell Differentiation - physiology | Strongylocentrotus - growth & development | Muscle Cells - ultrastructure | Strongylocentrotus - ultrastructure | Microscopy, Electron, Transmission | Muscle, Skeletal - growth & development | Strongylocentrotus - cytology | Muscle Development - physiology | Muscle, Skeletal - ultrastructure | Epithelial Cells - ultrastructure | Mesentery - cytology | Muscle Cells - cytology | Connective Tissue - ultrastructure | Animals | Models, Biological | Nerve Fibers - ultrastructure | Connective Tissue Cells - cytology | Comparative studies | Aquatic life | Muscular system | Microscopy
Journal Article
PLOS ONE, ISSN 1932-6203, 03/2019, Volume 14, Issue 3, p. e0212524
Purpose Transplantation of limbal stem cells is a promising therapy for limbal stem cell deficiency. Limbal cells can be harvested from either a healthy part... 
POPULATION | STEM-CELLS | KERATIN | NUCLEAR ANTIGEN | ALLOGRAFT | MULTIDISCIPLINARY SCIENCES | AMNIOTIC MEMBRANE | EX-VIVO | EXPRESSION | ABCG2 TRANSPORTER | TRANSPLANTATION | Immunohistochemistry | Keratin | Analysis | Stem cells | Genetic aspects | Transplantation | Research | Care and treatment | Usage | Epithelial cells | Eye diseases
Journal Article