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Functional genomics of human colon organoids
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Functional genomics of human colon organoids (ATAC-Seq)
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Functional genomics of human colon organoids (RNA-Seq)
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Genome-wide transcriptome profiling of Colon Intestine-Chip and Conventional Organoid Cell Culture System Using RNA-seq
Single cell RNA sequencing of day 6 and day 13 endodermal progenitors
Digital gene expression of directed differenciation protocols
Open chromatin and transcriptome analysis of iPSCs differentiated into lung epithelium at air-liquid interface reveals key transcriptional drivers and processes
Open chromatin and transcriptome analysis of iPSCs differentiated into lung epithelium at air-liquid interface reveals key transcriptional drivers and processes (RNA-seq data)
Open chromatin and transcriptome analysis of iPSCs differentiated into lung epithelium at air-liquid interface reveals key transcriptional drivers and processes (ATAC-seq data)
Chromatin and tissue plasticity precede commitment to intestinal differentiation during endoderm development
The lineage-specific transcriptional regulator, CDX2, navigates a dynamic chromatin landscape to control distinct stages of intestinal development
Generation of intestinal progenitor cells from mouse fibroblasts
PubMed Similar studies Analyze with GEO2R
Colon tumor samples
PubMed Full text in PMC Similar studies Analyze with GEO2R
Caco2 polarization time-course
Chemically defined and scalable culture system for intestinal stem cells derived from human intestinal organoids
Chemically defined and scalable culture system for intestinal stem cells derived from human intestinal organoids (scRNA-Seq)
Chemically defined and scalable culture system for intestinal stem cells derived from human intestinal organoids (RNA-Seq)
Genomic and epigenomic responses to aspirin in human colonic organoids
Hepatocyte Nuclear Factor 1 coordinates multiple functions of intestinal epithelial cells
Genomic analyses of primary mouse prostate organoid culture with overexpression of FOXA1
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