Induced Pluripotent Stem Cells (I Psc)

Stem Cells – A Promise to Elixir

Regeneration / Stem Cells / Human Embryonic Stem Cells / Stem cell and Regenerative medicine / Cancer / Breast Cancer / Induced Pluripotent Stem Cells (I Psc) / Cancer stem cells / Prostate Cancer / Cancer Cell Biology / Cancer Biology / Plant Molecular Marker / Molecular Markers / Adult Stem Cells / Cancer Research / Brain cancer / Regenerative Medicine / Cancer, Stem Cell Biology / Stem cell Therapy / Stem Cell Research / Cancer Genetics / Hematopoietic Stem Cells / Mesenchymal stem cells / Regenerative Neurobiology and Neurology, Stem Cell Medicine / Breast Cancer Research / Tissue engineering and regenerative medicine / Radiation and Cancer Stem Cells / Molecular Marker / Stem cells and Regenerative Medicine / induced pluripotent stem cells (iPSCs), embryonic stem cells (ESCs) / Breast Cancer / Induced Pluripotent Stem Cells (I Psc) / Cancer stem cells / Prostate Cancer / Cancer Cell Biology / Cancer Biology / Plant Molecular Marker / Molecular Markers / Adult Stem Cells / Cancer Research / Brain cancer / Regenerative Medicine / Cancer, Stem Cell Biology / Stem cell Therapy / Stem Cell Research / Cancer Genetics / Hematopoietic Stem Cells / Mesenchymal stem cells / Regenerative Neurobiology and Neurology, Stem Cell Medicine / Breast Cancer Research / Tissue engineering and regenerative medicine / Radiation and Cancer Stem Cells / Molecular Marker / Stem cells and Regenerative Medicine / induced pluripotent stem cells (iPSCs), embryonic stem cells (ESCs)

Retinoic Acid regulates hematopoietic development from human pluripotent stem cells

Induced Pluripotent Stem Cells (I Psc) / Hematopoiesis / Signal Transduction / Hematopoietic Stem Cells / Cell line / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells

A new route to human embryonic stem cells

Induced Pluripotent Stem Cells (I Psc) / Cellular Reprogramming / Regenerative Medicine / Cell Differentiation / Humans / Embryonic Stem Cells / Embryo Research / Oocytes / Embryonic Stem Cells / Embryo Research / Oocytes

Oct4 and Klf4 Reprogram Dermal Papilla Cells into Induced Pluripotent Stem Cells

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Placenta as a reservoir of stem cells: an underutilized resource?

Stem Cells / Induced Pluripotent Stem Cells (I Psc) / Cell Differentiation / Pregnancy / Humans / Human Resources for Health / Placenta / Mice / Female / Animals / Rats / Epithelial cells / Adult / Mesenchymal Stromal Cells / Human Resources for Health / Placenta / Mice / Female / Animals / Rats / Epithelial cells / Adult / Mesenchymal Stromal Cells

Retinoic Acid regulates hematopoietic development from human pluripotent stem cells

Induced Pluripotent Stem Cells (I Psc) / Hematopoiesis / Signal Transduction / Hematopoietic Stem Cells / Cell line / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells

Polycomb complexes repress developmental regulators in murine embryonic stem cells

Stem Cells / Human Embryonic Stem Cells / Induced Pluripotent Stem Cells (I Psc) / Multidisciplinary / Gene Silencing / Nature / Cell line / Cell Differentiation / Mice / Animals / Embryonic Stem Cell / DNA methylation / Transcription Factor / Chromatin structure / Embryonic Development / Polycomb group proteins / ES cell / Nature / Cell line / Cell Differentiation / Mice / Animals / Embryonic Stem Cell / DNA methylation / Transcription Factor / Chromatin structure / Embryonic Development / Polycomb group proteins / ES cell

No shortcuts to pig embryonic stem cells

Stem Cells / Clinical Trial / Induced Pluripotent Stem Cells (I Psc) / Stem Cell / Genetic Engineering / Embryo / Theriogenology / Biological Sciences / Cell line / Cell Differentiation / Animals / Embryonic Stem Cell / Animal Model / Embryonic Stem Cells / Embryonic Development / Environmental Conditions / Time Factors / In vitro culture / Biological markers / Species Specificity / Sus Scrofa / Embryos / Embryo Development / Embryo / Theriogenology / Biological Sciences / Cell line / Cell Differentiation / Animals / Embryonic Stem Cell / Animal Model / Embryonic Stem Cells / Embryonic Development / Environmental Conditions / Time Factors / In vitro culture / Biological markers / Species Specificity / Sus Scrofa / Embryos / Embryo Development

A Molecular Basis for Human Embryonic Stem Cell Pluripotency

Technology / Human Development / Forecasting / Induced Pluripotent Stem Cells (I Psc) / Human embryonic stem cell / Stem Cell / Molecular Mechanics / Signal Transduction / Biological Sciences / Humans / Wnt Signaling / Animals / Embryonic Stem Cell / Embryonic Stem Cells / Transforming Growth Factor Beta / Cell Fate / Stem Cell / Molecular Mechanics / Signal Transduction / Biological Sciences / Humans / Wnt Signaling / Animals / Embryonic Stem Cell / Embryonic Stem Cells / Transforming Growth Factor Beta / Cell Fate

SILAC Proteomics of Planarians Identifies Ncoa5 as a Conserved Component of Pluripotent Stem Cells

Regeneration / Induced Pluripotent Stem Cells (I Psc) / Proteomics / RNA interference / Cell Differentiation / Mice / Animals / Blastocyst / Cell Proliferation / Proteome / Isotope Labeling / Planarians / Mice / Animals / Blastocyst / Cell Proliferation / Proteome / Isotope Labeling / Planarians

SILAC proteomics of planarians identifies Ncoa5 as a conserved component of pluripotent stem cells

Regeneration / Induced Pluripotent Stem Cells (I Psc) / Proteomics / RNA interference / Cell Differentiation / Mice / Animals / Blastocyst / Cell Proliferation / Proteome / Isotope Labeling / Planarians / Mice / Animals / Blastocyst / Cell Proliferation / Proteome / Isotope Labeling / Planarians

Human cystic fibrosis embryonic stem cell lines derived on placental mesenchymal stromal cells

Genetics / Tissue Engineering / Cystic Fibrosis / Induced Pluripotent Stem Cells (I Psc) / Human embryonic stem cell / Stem Cell / Cell line / Cell Differentiation / Humans / Genetic Testing / Mutation / Placenta / Female / Embryonic Stem Cell / Plant tissue Culture Techniques / Polymerase Chain Reaction / Drug Screening / Karyotyping / Embryonic Stem Cells / Stromal Cells / Mesenchymal Stromal Cells / Gene expression profiling / Stem Cell / Cell line / Cell Differentiation / Humans / Genetic Testing / Mutation / Placenta / Female / Embryonic Stem Cell / Plant tissue Culture Techniques / Polymerase Chain Reaction / Drug Screening / Karyotyping / Embryonic Stem Cells / Stromal Cells / Mesenchymal Stromal Cells / Gene expression profiling

Pluripotent stem cell derived cardiovascular progenitors - A developmental perspective

Developmental Biology / Stem Cells / Induced Pluripotent Stem Cells (I Psc) / Signal Transduction / Biological Sciences / Cell Differentiation / Humans / Animals / Cardiovascular Diseases / Cell Proliferation / Cell Differentiation / Humans / Animals / Cardiovascular Diseases / Cell Proliferation

A new route to human embryonic stem cells

Induced Pluripotent Stem Cells (I Psc) / Cellular Reprogramming / Regenerative Medicine / Cell Differentiation / Humans / Embryonic Stem Cells / Embryo Research / Oocytes / Embryonic Stem Cells / Embryo Research / Oocytes

Neural Stem Cells Express Non-Neural Markers During Embryoid Body Coculture

Technology / Stem Cells / Induced Pluripotent Stem Cells (I Psc) / Gene expression / Cell separation / Signal Transduction / Biological Sciences / DNA / Neural stem cell / Cell line / Cell Differentiation / Brain / Mice / Animals / STEM / Neurons / Phenotype / Chimera / Biological markers / Fetus / Base Sequence / Recombinant Proteins / Signal Transduction / Biological Sciences / DNA / Neural stem cell / Cell line / Cell Differentiation / Brain / Mice / Animals / STEM / Neurons / Phenotype / Chimera / Biological markers / Fetus / Base Sequence / Recombinant Proteins

Retinoic Acid regulates hematopoietic development from human pluripotent stem cells

Induced Pluripotent Stem Cells (I Psc) / Hematopoiesis / Signal Transduction / Hematopoietic Stem Cells / Cell line / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells / Cell Differentiation / Humans / Embryonic Stem Cells / Phenotype / Immunophenotyping / Tretinoin / Induced Pluripotent Stem Cells
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