Release from Quiescence of Primitive Human Hematopoietic Stem/Progenitor Cells by Blocking Their Cell‐Surface TGF‐β Type II Receptor in a Short‐Term In Vitro Assay
Autor: | Karin Ducos, Angelo A. Cardoso, Pascal Batard, Marie-Noëlle Monier, Antoinette Hatzfeld, Sergueï Kisselev, Jacques Hatzfeld, Nicolas O. Fortunel |
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Rok vydání: | 2000 |
Předmět: |
Time Factors
Cellular differentiation Receptor Transforming Growth Factor-beta Type I CD34 Antigens CD34 Protein Serine-Threonine Kinases Biology NAD+ Nucleosidase Antigens CD Transforming Growth Factor beta Humans Neoplastic transformation RNA Messenger Cloning Molecular Progenitor cell ADP-ribosyl Cyclase Membrane Glycoproteins Cell growth Receptor Transforming Growth Factor-beta Type II Cell Differentiation Cell Biology Hematopoietic Stem Cells ADP-ribosyl Cyclase 1 Antigens Differentiation Cell biology Endothelial stem cell Haematopoiesis Molecular Medicine Activin Receptors Type I Receptors Transforming Growth Factor beta Cell Division Developmental Biology Adult stem cell |
Zdroj: | STEM CELLS. 18:102-111 |
ISSN: | 1549-4918 1066-5099 |
DOI: | 10.1634/stemcells.18-2-102 |
Popis: | Genetic alterations of the signaling cascade of transforming growth factor-beta (TGF-beta) are often associated with neoplastic transformation of primitive cells. This demonstrates the key role for this pleiotropic factor in the control of quiescence and cell proliferation in vivo. In the high proliferative potential-quiescent cell (HPP-Q) in vitro assay, the use of TGF-beta1 blocking antibodies (anti-TGF-beta1) allows the detection within two to three weeks of primitive hematopoietic cells called HPP-Q, which otherwise would not grow. However, the possibility of triggering cell proliferation by blocking the cell-surface TGF-beta receptors has not been investigated until now. We have tested here the efficiency of a blocking antibody against TGF-betaRII (anti-TGF-betaRII) on CD34(+)CD38(-) hematopoietic cells, a subpopulation enriched in primitive stem/progenitor cells, and compared its effect with that of anti-TGF-beta1. About twice as many HPP colony-forming cells were detected in the presence of anti-TGF-beta1 or anti-TGF-betaRII, compared to the control (p < 0.02). Moreover, anti-TGF-betaRII was as efficient as anti-TGF-beta1 for activating multipotent HPP-granulocyte erythroid macrophage megakaryocyte and HPP-Mix, bipotent HPP-granulocyte-macrophage (GM) and unipotent HPP-G, HPP-M and HPP-BFU-E. We therefore propose the use of anti-TGF-betaRII to release primitive cells from quiescence in the HPP-Q assay. This strategy could be extended to nonhematopoietic tissues, as TGF-beta1 may be a pleiotropic regulator of somatic stem cell quiescence. |
Databáze: | OpenAIRE |
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