» Articles » PMID: 9808559

Growth and Differentiation of Human Stem Cell Factor/erythropoietin-dependent Erythroid Progenitor Cells in Vitro

Overview
Journal Blood
Publisher Elsevier
Specialty Hematology
Date 1998 Nov 10
PMID 9808559
Citations 50
Authors
Affiliations
Soon will be listed here.
Abstract

Stem cell factor (SCF) and erythropoietin (Epo) effectively support erythroid cell development in vivo and in vitro. We have studied here an SCF/Epo-dependent erythroid progenitor cell from cord blood that can be efficiently amplified in liquid culture to large cell numbers in the presence of SCF, Epo, insulin-like growth factor-1 (IGF-1), dexamethasone, and estrogen. Additionally, by changing the culture conditions and by administration of Epo plus insulin, such progenitor cells effectively undergo terminal differentiation in culture and thereby faithfully recapitulate erythroid cell differentiation in vitro. This SCF/Epo-dependent erythroid progenitor is also present in CD34(+) peripheral blood stem cells and human bone marrow and can be isolated, amplified, and differentiated in vitro under the same conditions. Thus, highly homogenous populations of SCF/Epo-dependent erythroid progenitors can be obtained in large cell numbers that are most suitable for further biochemical and molecular studies. We demonstrate that such cells express the recently identified adapter protein p62(dok) that is involved in signaling downstream of the c-kit/SCF receptor. Additionally, cells express the cyclin-dependent kinase (CDK) inhibitors p21(cip1) and p27(kip1) that are highly induced when cells differentiate. Thus, the in vitro system described allows the study of molecules and signaling pathways involved in proliferation or differentiation of human erythroid cells.

Citing Articles

Progresses in overcoming the limitations of in vitro erythropoiesis using human induced pluripotent stem cells.

Ju H, Sohn Y, Nam Y, Rim Y Stem Cell Res Ther. 2024; 15(1):142.

PMID: 38750578 PMC: 11094930. DOI: 10.1186/s13287-024-03754-9.


Uncovering a Cryptic Site of Malaria Pathogenesis: Models to Study Interactions Between and the Bone Marrow.

Feldman T, Egan E Front Cell Infect Microbiol. 2022; 12:917267.

PMID: 35719356 PMC: 9201243. DOI: 10.3389/fcimb.2022.917267.


EpoR stimulates rapid cycling and larger red cells during mouse and human erythropoiesis.

Hidalgo D, Bejder J, Pop R, Gellatly K, Hwang Y, Maxwell Scalf S Nat Commun. 2021; 12(1):7334.

PMID: 34921133 PMC: 8683474. DOI: 10.1038/s41467-021-27562-4.


Comprehensive phenotyping of erythropoiesis in human bone marrow: Evaluation of normal and ineffective erythropoiesis.

Yan H, Ali A, Blanc L, Narla A, Lane J, Gao E Am J Hematol. 2021; 96(9):1064-1076.

PMID: 34021930 PMC: 8355124. DOI: 10.1002/ajh.26247.


Zebrafish Kit ligands cooperate with erythropoietin to promote erythroid cell expansion.

Oltova J, Svoboda O, Machonova O, Svatonova P, Traver D, Kolar M Blood Adv. 2020; 4(23):5915-5924.

PMID: 33259600 PMC: 7724902. DOI: 10.1182/bloodadvances.2020001700.