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Burst-forming unit-erythroid (BFU-E) and colony-forming unit-erythroid (CFU-E) cells are erythroid progenitors traditionally defined by colony assays. We developed a flow cytometry-based strategy for isolating human BFU-E and CFU-E cells based on the changes in expression of cell surface markers dur...
ORGANISM(S): Homo sapiens 
Time-resolved CFU-E proteome was analyzed by time collapsed super-SILAC with erythropoietin-stimulated BaF3-mEpoR proteome as internal heavy standard.
ORGANISM(S): Mus musculus (Mouse) 
2022-09-28 | PXD004539 | Pride
Using RNA-seq technology, we quantitatively determined the expression profile of microRNAs during mouse terminal erythroid differentiation. CFU-E erythroid progenitors were isolated from E14.5 fetal liver as the Ter119, B220, Mac-1, CD3 and Gr-1 negative, C-Kit positive and 20% high CD71 population....
ORGANISM(S): Mus musculus 
With the aim of finding small molecules that stimulate erythropoiesis earlier than erythropoietin and that enhance CFU-E production, we studied the mechanism by which glucocorticoids increase CFU-E formation. Using BFU-E and CFU-E progenitors purified by a new technique, we demonstrate that glucocor...
ORGANISM(S): Mus musculus 
Transcriptome of EpoR-/- CFU-E cells
RNA-Seq of PreCFU-E and CFU-E progenitors from wild type and Scf mutants
Burst-forming unit-erythroid (BFU-E) and colony-forming unit-erythroid (CFU-E) cells are erythroid progenitors traditionally defined by colony assays. We developed a flow cytometry-based strategy for isolating human BFU-E and CFU-E cells based on the changes in expression of cell surface markers dur...
ORGANISM(S): Homo sapiens 
2014-10-30 | GSE61566 | GEO
During erythropoiesis, erythroid progenitor cells proliferate in response to erythropoietin (Epo) and progressively differentiate, which encompasses an increasing accumulation of iron-bound hemoglobin. The impact of Epo on these dynamic processes remained to be resolved. By combining the development...
ORGANISM(S): Mus musculus 
2022-09-22 | GSE108696 | GEO
It has been shown previously that endothelial cells and LepR+ stromal cells are the main sources of SCF in vivo in the mouse bone marrow. We tested whether SCF from endothelial cells and/or LepR+ stromal cells is important for the maintenance of hematopoietic progenitors and erythroid progenitors in...
ORGANISM(S): Mus musculus 
2018-12-09 | GSE122468 | GEO
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