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PloS one, ISSN 1932-6203, 2014, Volume 9, Issue 9, p. e107308
The inner cell mass (ICM) and trophoblast cell lineages duet early embryonic development in mammals. After implantation, the ICM forms the embryo proper as... 
DERIVATION | INHIBITION | GENE | MULTIDISCIPLINARY SCIENCES | MOUSE EMBRYOS | FGF-4 | SELF-RENEWAL | DIFFERENTIATION | INDUCTION | EXPRESSION | Embryonic Stem Cells - metabolism | Ectoderm - drug effects | Embryo Implantation - drug effects | Heterocyclic Compounds, 3-Ring - pharmacology | Humans | Fibroblast Growth Factor 2 - pharmacology | Blastocyst - physiology | Ectoderm - physiology | Cell Lineage - drug effects | Culture Media - metabolism | Trophoblasts - drug effects | Ectoderm - metabolism | Female | Cell Differentiation - physiology | Amides - pharmacology | Embryo Implantation - physiology | Trophoblasts - metabolism | Placenta - physiology | Blastocyst - metabolism | Embryonic Development - physiology | Blastocyst - drug effects | Embryonic Stem Cells - physiology | Cell Lineage - physiology | Placenta - metabolism | Pregnancy | Animals | Activins - pharmacology | Embryonic Stem Cells - drug effects | Cell Differentiation - drug effects | Trophoblasts - physiology | Mice | Pyridines - pharmacology | Embryonic Development - drug effects | Fibroblast growth factors | Stem cells | Cell culture | Ectoderm | Laboratories | Science | Stem cell transplantation | Derivation | CDX2 protein | Kinases | Proteins | Embryogenesis | CDH1 protein | Fibroblasts | Giant cells | Growth factors | Fibroblast growth factor 2 | Developmental biology | Fetuses | Implantation | Blastocysts | Gene expression | Chemical compounds | Embryos | Molecular chains | Embryonic growth stage | Placenta | Morphology | Activin | Pluripotency
Journal Article
Developmental Cell, ISSN 1534-5807, 06/2017, Volume 41, Issue 5, pp. 481 - 495.e5
Journal Article
Oncogene, ISSN 0950-9232, 08/2017, Volume 36, Issue 34, pp. 4887 - 4900
Our recent perplexing findings that polyploid giant cancer cells (PGCCs) acquired embryonic-like stemness and were capable of tumor initiation raised two... 
OVARIAN TUMORIGENESIS | BIOCHEMISTRY & MOLECULAR BIOLOGY | TUMOR-CELLS | CELLULAR SENESCENCE | FAILURE | CLEAVAGE-STAGE EMBRYOS | ESCAPE | CELL BIOLOGY | IN-VITRO | CYTOKINESIS | THERAPY | ONCOLOGY | GENETICS & HEREDITY | DIFFERENTIATION | Embryonic Stem Cells - metabolism | Paclitaxel - pharmacology | Neoplastic Stem Cells - drug effects | Giant Cells - drug effects | Humans | Ovarian Neoplasms - pathology | Carcinogenesis - metabolism | Blastomeres - drug effects | Blastomeres - metabolism | Neoplastic Stem Cells - metabolism | Female | Ovarian Neoplasms - metabolism | Cell Differentiation - physiology | Ovarian Neoplasms - drug therapy | Neoplastic Stem Cells - physiology | Polyploidy | Giant Cells - metabolism | Blastomeres - pathology | Carcinogenesis - drug effects | Carcinogenesis - pathology | Drug Resistance, Neoplasm - genetics | Embryonic Stem Cells - drug effects | Cell Differentiation - drug effects | Embryonic Stem Cells - pathology | Cell Line, Tumor | Signal Transduction - physiology | Giant Cells - pathology | Cellular signal transduction | Research | Cell differentiation | Cancer cells | Blastomeres | Senescence | Carcinoma | Mesenchyme | Mitosis | Oct-4 protein | Embryo cells | Benign | Compaction | Cytokinesis | Embryos | Spheroids | Ovarian cancer | Yes-associated protein | Chemotherapy | Developmental stages | Somatic cells | Paclitaxel | Stem cells | Giant cells | Tumorigenesis | Budding | Cancer | Tumors | Original
Journal Article
Circulation, ISSN 0009-7322, 01/2005, Volume 111, Issue 1, pp. 11 - 20
Background - Human embryonic stem cells (hESCs) derived from blastocysts can propagate indefinitely in culture while maintaining pluripotency, including the... 
Cardiac development | Viruses | Gene therapy | Pacemakers | Stem cells | pacemakers | stem cells | viruses | CARDIAC & CARDIOVASCULAR SYSTEMS | GENE DELIVERY | MYOCYTES | gene therapy | LENTIVIRAL VECTORS | BIOLOGICAL PACEMAKER | LIDOCAINE | IN-VIVO | CANINE HEART | CONDUCTION | PERIPHERAL VASCULAR DISEASE | DIFFERENTIATION | cardiac development | EXPRESSION | Lidocaine - pharmacology | Heart Ventricles - cytology | Cells, Cultured - cytology | Giant Cells - drug effects | Heart - physiology | Humans | Electrophysiology | Myocardial Contraction - drug effects | Green Fluorescent Proteins - genetics | Action Potentials | Cell Fusion | HIV-1 - physiology | Pericardium - physiology | Heart Conduction System - physiology | Female | Cell Differentiation | Genes, Reporter | Organ Culture Techniques | Heart Conduction System - cytology | Green Fluorescent Proteins - analysis | Guinea Pigs | Pluripotent Stem Cells - cytology | Transduction, Genetic | Myocytes, Cardiac - cytology | Pluripotent Stem Cells - physiology | Defective Viruses - genetics | Adrenergic beta-Agonists - pharmacology | Cells, Cultured - physiology | Rats | Giant Cells - cytology | Pyrimidines - pharmacology | HIV-1 - genetics | Defective Viruses - physiology | Myocytes, Cardiac - transplantation | Animals | Myocytes, Cardiac - drug effects | Genetic Vectors - pharmacology | Myocytes, Cardiac - physiology | Isoproterenol - pharmacology | Mice
Journal Article