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ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for  adipogenesis | eLife
ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for adipogenesis | eLife

DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis  via Krüppel-like factor 15 gene expression. - Abstract - Europe PMC
DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis via Krüppel-like factor 15 gene expression. - Abstract - Europe PMC

Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis | Nature  Genetics
Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis | Nature Genetics

ASBMR 2010 Annual Meeting SA0001–SA0485 - 2010 - Journal of Bone and  Mineral Research - Wiley Online Library
ASBMR 2010 Annual Meeting SA0001–SA0485 - 2010 - Journal of Bone and Mineral Research - Wiley Online Library

Related to Figure 5 a, Boxplot indicating the number of... | Download  Scientific Diagram
Related to Figure 5 a, Boxplot indicating the number of... | Download Scientific Diagram

Adipogenesis requires more dramatic changes in the transcriptome than... |  Download Scientific Diagram
Adipogenesis requires more dramatic changes in the transcriptome than... | Download Scientific Diagram

A subset of MSC transcription factors drive osteogenesis and suppress... |  Download Scientific Diagram
A subset of MSC transcription factors drive osteogenesis and suppress... | Download Scientific Diagram

Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis | Nature  Genetics
Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis | Nature Genetics

ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for  adipogenesis | eLife
ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for adipogenesis | eLife

IMAGE predicts transcription factors controlling human MSC commitment... |  Download Scientific Diagram
IMAGE predicts transcription factors controlling human MSC commitment... | Download Scientific Diagram

Genome-wide discovery of genetic loci that uncouple excess adiposity from  its comorbidities
Genome-wide discovery of genetic loci that uncouple excess adiposity from its comorbidities

JCI - Mesenchymal niche remodeling impairs hematopoiesis via stanniocalcin  1 in acute myeloid leukemia
JCI - Mesenchymal niche remodeling impairs hematopoiesis via stanniocalcin 1 in acute myeloid leukemia

Publications - University of Southern Denmark, SDU
Publications - University of Southern Denmark, SDU

Publications - University of Southern Denmark, SDU
Publications - University of Southern Denmark, SDU

Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis | Nature  Genetics
Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis | Nature Genetics

GENE THERAPY MOLECULAR BIOLOGY Volume 12 Number 2
GENE THERAPY MOLECULAR BIOLOGY Volume 12 Number 2

PDF) Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis
PDF) Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis

ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for  adipogenesis | eLife
ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for adipogenesis | eLife

DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis  via Krüppel-like factor 15 gene expression. - Abstract - Europe PMC
DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis via Krüppel-like factor 15 gene expression. - Abstract - Europe PMC

Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis | Nature  Genetics
Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis | Nature Genetics

Widespread changes in transcriptome profile of human mesenchymal stem cells  induced by two-dimensional nanosilicates | PNAS
Widespread changes in transcriptome profile of human mesenchymal stem cells induced by two-dimensional nanosilicates | PNAS

DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis  via Krüppel-like factor 15 gene expression | Laboratory Investigation
DNA binding-dependent glucocorticoid receptor activity promotes adipogenesis via Krüppel-like factor 15 gene expression | Laboratory Investigation

Osteogenesis depends on commissioning of a network of stem cell  transcription factors that act as repressors of adipogenesis | Nature  Genetics
Osteogenesis depends on commissioning of a network of stem cell transcription factors that act as repressors of adipogenesis | Nature Genetics

ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for  adipogenesis | eLife
ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for adipogenesis | eLife

Genome-wide association study implicates novel loci and reveals candidate  effector genes for longitudinal pediatric bone accrual through  variant-to-gene mapping | medRxiv
Genome-wide association study implicates novel loci and reveals candidate effector genes for longitudinal pediatric bone accrual through variant-to-gene mapping | medRxiv

Widespread changes in transcriptome profile of human mesenchymal stem cells  induced by two-dimensional nanosilicates | PNAS
Widespread changes in transcriptome profile of human mesenchymal stem cells induced by two-dimensional nanosilicates | PNAS

Genome-wide association study implicates novel loci and reveals candidate  effector genes for longitudinal pediatric bone accrual through  variant-to-gene mapping | medRxiv
Genome-wide association study implicates novel loci and reveals candidate effector genes for longitudinal pediatric bone accrual through variant-to-gene mapping | medRxiv