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Frontiers | FGF Signaling Pathway: A Key Regulator of Stem Cell Pluripotency  | Cell and Developmental Biology
Frontiers | FGF Signaling Pathway: A Key Regulator of Stem Cell Pluripotency | Cell and Developmental Biology

Smad7 enables STAT3 activation and promotes pluripotency independent of TGF-β  signaling | PNAS
Smad7 enables STAT3 activation and promotes pluripotency independent of TGF-β signaling | PNAS

The transcriptional regulator ZNF398 mediates pluripotency and epithelial  character downstream of TGF-beta in human PSCs | Nature Communications
The transcriptional regulator ZNF398 mediates pluripotency and epithelial character downstream of TGF-beta in human PSCs | Nature Communications

TGF-β Family Signaling in Embryonic and Somatic Stem-Cell Renewal and  Differentiation. - Abstract - Europe PMC
TGF-β Family Signaling in Embryonic and Somatic Stem-Cell Renewal and Differentiation. - Abstract - Europe PMC

miR‑146b‑5p promotes the neural conversion of pluripotent stem cells by  targeting Smad4
miR‑146b‑5p promotes the neural conversion of pluripotent stem cells by targeting Smad4

Reprogramming oral epithelial keratinocytes into a pluripotent phenotype  for tissue regeneration - Bazina - - Clinical and Experimental Dental  Research - Wiley Online Library
Reprogramming oral epithelial keratinocytes into a pluripotent phenotype for tissue regeneration - Bazina - - Clinical and Experimental Dental Research - Wiley Online Library

Reprogramming oral epithelial keratinocytes into a pluripotent phenotype  for tissue regeneration - Bazina - - Clinical and Experimental Dental  Research - Wiley Online Library
Reprogramming oral epithelial keratinocytes into a pluripotent phenotype for tissue regeneration - Bazina - - Clinical and Experimental Dental Research - Wiley Online Library

TGF Family Signaling Pathways in Pluripotent and Teratocarcinoma Stem  Cells' Fate Decisions: Balancing Between Self-Renewal, D
TGF Family Signaling Pathways in Pluripotent and Teratocarcinoma Stem Cells' Fate Decisions: Balancing Between Self-Renewal, D

TGF-β/SMAD signaling regulation of mesenchymal stem cells in adipocyte  commitment | Stem Cell Research & Therapy | Full Text
TGF-β/SMAD signaling regulation of mesenchymal stem cells in adipocyte commitment | Stem Cell Research & Therapy | Full Text

Mesenchymal to Epithelial Transition Mediated by CDH1 Promotes Spontaneous  Reprogramming of Male Germline Stem Cells to Pluripotency. - Abstract -  Europe PMC
Mesenchymal to Epithelial Transition Mediated by CDH1 Promotes Spontaneous Reprogramming of Male Germline Stem Cells to Pluripotency. - Abstract - Europe PMC

Generation of Quiescent Cardiac Fibroblasts From Human Induced Pluripotent  Stem Cells for In Vitro Modeling of Cardiac Fibrosis | Circulation Research
Generation of Quiescent Cardiac Fibroblasts From Human Induced Pluripotent Stem Cells for In Vitro Modeling of Cardiac Fibrosis | Circulation Research

TGF-βI Regulates Cell Migration through Pluripotent Transcription Factor  OCT4 in Endometriosis
TGF-βI Regulates Cell Migration through Pluripotent Transcription Factor OCT4 in Endometriosis

TGF-βI Regulates Cell Migration through Pluripotent Transcription Factor  OCT4 in Endometriosis
TGF-βI Regulates Cell Migration through Pluripotent Transcription Factor OCT4 in Endometriosis

Cells | Free Full-Text | TGFβ Family Signaling Pathways in Pluripotent and  Teratocarcinoma Stem Cells' Fate Decisions: Balancing Between Self-Renewal,  Differentiation, and Cancer | HTML
Cells | Free Full-Text | TGFβ Family Signaling Pathways in Pluripotent and Teratocarcinoma Stem Cells' Fate Decisions: Balancing Between Self-Renewal, Differentiation, and Cancer | HTML

Endothelial Lineage Differentiation from Induced Pluripotent Stem Cells Is  Regulated by MicroRNA-21 and Transforming Growth Factor β2 (TGF-β2)  Pathways* - Journal of Biological Chemistry
Endothelial Lineage Differentiation from Induced Pluripotent Stem Cells Is Regulated by MicroRNA-21 and Transforming Growth Factor β2 (TGF-β2) Pathways* - Journal of Biological Chemistry

Gene expression profile in human induced pluripotent stem cells:  Chondrogenic differentiation in vitro, part A
Gene expression profile in human induced pluripotent stem cells: Chondrogenic differentiation in vitro, part A

Differentiation and Application of Induced Pluripotent Stem Cell–Derived  Vascular Smooth Muscle Cells | Arteriosclerosis, Thrombosis, and Vascular  Biology
Differentiation and Application of Induced Pluripotent Stem Cell–Derived Vascular Smooth Muscle Cells | Arteriosclerosis, Thrombosis, and Vascular Biology

Schematic model of the dual functions of Smad2 in the maintenance of... |  Download Scientific Diagram
Schematic model of the dual functions of Smad2 in the maintenance of... | Download Scientific Diagram

Embryonic Stem Cell Markers
Embryonic Stem Cell Markers

Gene expression profile in human induced pluripotent stem cells:  Chondrogenic differentiation in vitro, part A
Gene expression profile in human induced pluripotent stem cells: Chondrogenic differentiation in vitro, part A

Frontiers | Chondral Differentiation of Induced Pluripotent Stem Cells  Without Progression Into the Endochondral Pathway | Cell and Developmental  Biology
Frontiers | Chondral Differentiation of Induced Pluripotent Stem Cells Without Progression Into the Endochondral Pathway | Cell and Developmental Biology

Embryonic and Induced Pluripotent Stem Cells Markers: R&D Systems
Embryonic and Induced Pluripotent Stem Cells Markers: R&D Systems

Figure 3 from Dedifferentiation process driven by TGF-beta signaling  enhances stem cell properties in human colorectal cancer | Semantic Scholar
Figure 3 from Dedifferentiation process driven by TGF-beta signaling enhances stem cell properties in human colorectal cancer | Semantic Scholar

A Roadmap for Human Liver Differentiation from Pluripotent Stem Cells -  ScienceDirect
A Roadmap for Human Liver Differentiation from Pluripotent Stem Cells - ScienceDirect

Pluripotency and Differentiation | Cell Signaling Technology
Pluripotency and Differentiation | Cell Signaling Technology