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PDF) Exploring the Mechanisms of Differentiation, Dedifferentiation,  Reprogramming and Transdifferentiation
PDF) Exploring the Mechanisms of Differentiation, Dedifferentiation, Reprogramming and Transdifferentiation

Characterization of enhancers and the role of the transcription factor KLF7  in regulating corneal epithelial differentiation - Journal of Biological  Chemistry
Characterization of enhancers and the role of the transcription factor KLF7 in regulating corneal epithelial differentiation - Journal of Biological Chemistry

ASCL1 phosphorylation and ID2 upregulation are roadblocks to glioblastoma  stem cell differentiation | Scientific Reports
ASCL1 phosphorylation and ID2 upregulation are roadblocks to glioblastoma stem cell differentiation | Scientific Reports

A “seesaw” model for cell fate conversion A modified diagram of the... |  Download Scientific Diagram
A “seesaw” model for cell fate conversion A modified diagram of the... | Download Scientific Diagram

Differentiation stage determines potential of hematopoietic cells for  reprogramming into induced pluripotent stem cells | Nature Genetics
Differentiation stage determines potential of hematopoietic cells for reprogramming into induced pluripotent stem cells | Nature Genetics

Excluding Oct4 from Yamanaka Cocktail Unleashes the Developmental Potential  of iPSCs - ScienceDirect
Excluding Oct4 from Yamanaka Cocktail Unleashes the Developmental Potential of iPSCs - ScienceDirect

Connexin43 Mutant Patient‐Derived Induced Pluripotent Stem Cells Exhibit  Altered Differentiation Potential - Esseltine - 2017 - Journal of Bone and  Mineral Research - Wiley Online Library
Connexin43 Mutant Patient‐Derived Induced Pluripotent Stem Cells Exhibit Altered Differentiation Potential - Esseltine - 2017 - Journal of Bone and Mineral Research - Wiley Online Library

Differentiation stage determines potential of hematopoietic cells for  reprogramming into induced pluripotent stem cells | Nature Genetics
Differentiation stage determines potential of hematopoietic cells for reprogramming into induced pluripotent stem cells | Nature Genetics

Reactivation of the pluripotency program precedes formation of the cranial  neural crest
Reactivation of the pluripotency program precedes formation of the cranial neural crest

Induction of Pluripotency in Mouse Somatic Cells with Lineage Specifiers:  Cell
Induction of Pluripotency in Mouse Somatic Cells with Lineage Specifiers: Cell

Differentiation stage determines potential of hematopoietic cells for  reprogramming into induced pluripotent stem cells | Nature Genetics
Differentiation stage determines potential of hematopoietic cells for reprogramming into induced pluripotent stem cells | Nature Genetics

Mitochondria in reprogramming and differentiation. Scheme depicting... |  Download Scientific Diagram
Mitochondria in reprogramming and differentiation. Scheme depicting... | Download Scientific Diagram

IJMS | Free Full-Text | The Use of Stem Cell-Derived Organoids in Disease  Modeling: An Update | HTML
IJMS | Free Full-Text | The Use of Stem Cell-Derived Organoids in Disease Modeling: An Update | HTML

Frontiers | Changing Metabolism in Differentiating Cardiac Progenitor  Cells—Can Stem Cells Become Metabolically Flexible Cardiomyocytes? |  Cardiovascular Medicine
Frontiers | Changing Metabolism in Differentiating Cardiac Progenitor Cells—Can Stem Cells Become Metabolically Flexible Cardiomyocytes? | Cardiovascular Medicine

Stabilizing the stem-cell seesaw. a, During normal development, naive... |  Download Scientific Diagram
Stabilizing the stem-cell seesaw. a, During normal development, naive... | Download Scientific Diagram

Nanog induced intermediate state in regulating stem cell differentiation  and reprogramming | BMC Systems Biology | Full Text
Nanog induced intermediate state in regulating stem cell differentiation and reprogramming | BMC Systems Biology | Full Text

Cell fate conversion—from the viewpoint of small molecules and lineage  specifiers - Zhao - 2016 - Diabetes, Obesity and Metabolism - Wiley Online  Library
Cell fate conversion—from the viewpoint of small molecules and lineage specifiers - Zhao - 2016 - Diabetes, Obesity and Metabolism - Wiley Online Library

Trophoblast differentiation of human embryonic stem cells - Tiruthani -  2013 - Biotechnology Journal - Wiley Online Library
Trophoblast differentiation of human embryonic stem cells - Tiruthani - 2013 - Biotechnology Journal - Wiley Online Library

A decade of transcription factor-mediated reprogramming to pluripotency |  Nature Reviews Molecular Cell Biology
A decade of transcription factor-mediated reprogramming to pluripotency | Nature Reviews Molecular Cell Biology

Differentiate Seesaw Activities for Diverse Learners - YouTube
Differentiate Seesaw Activities for Diverse Learners - YouTube

Exploring the Mechanisms of Differentiation, Dedifferentiation,  Reprogramming and Transdifferentiation | PLOS ONE
Exploring the Mechanisms of Differentiation, Dedifferentiation, Reprogramming and Transdifferentiation | PLOS ONE

Excluding Oct4 from Yamanaka Cocktail Unleashes the Developmental Potential  of iPSCs - ScienceDirect
Excluding Oct4 from Yamanaka Cocktail Unleashes the Developmental Potential of iPSCs - ScienceDirect

A decade of transcription factor-mediated reprogramming to pluripotency |  Nature Reviews Molecular Cell Biology
A decade of transcription factor-mediated reprogramming to pluripotency | Nature Reviews Molecular Cell Biology

Induced Pluripotent Stem Cells and Their Use in Human Models of Disease and  Development | Physiological Reviews
Induced Pluripotent Stem Cells and Their Use in Human Models of Disease and Development | Physiological Reviews

SeesawPred: A Web Application for Predicting Cell-fate Determinants in Cell  Differentiation | Scientific Reports
SeesawPred: A Web Application for Predicting Cell-fate Determinants in Cell Differentiation | Scientific Reports

Reprogramming of Human Fibroblasts to Pluripotency with Lineage Specifiers  - ScienceDirect
Reprogramming of Human Fibroblasts to Pluripotency with Lineage Specifiers - ScienceDirect

Dynamic Changes in Histone H3 Phosphoacetylation during Early Embryonic  Stem Cell Differentiation Are Directly Mediated by Mitogen- and  Stress-activated Protein Kinase 1 via Activation of MAPK Pathways* -  Journal of Biological Chemistry
Dynamic Changes in Histone H3 Phosphoacetylation during Early Embryonic Stem Cell Differentiation Are Directly Mediated by Mitogen- and Stress-activated Protein Kinase 1 via Activation of MAPK Pathways* - Journal of Biological Chemistry

Reprogram or Reboot: Small Molecule Approaches for the Production of  Induced Pluripotent Stem Cells and Direct Cell Reprogramming | ACS Chemical  Biology
Reprogram or Reboot: Small Molecule Approaches for the Production of Induced Pluripotent Stem Cells and Direct Cell Reprogramming | ACS Chemical Biology