Extended in vitro expansion of adult, mobilized CD34(+) cells without significant cell senescence using a stromal cell coculture system with single cytokine support Journal Article


Authors: Weisel, K. C.; Moore, M. A. S.; Kanz, L.; Möhle, R.
Article Title: Extended in vitro expansion of adult, mobilized CD34(+) cells without significant cell senescence using a stromal cell coculture system with single cytokine support
Abstract: The macrophage colony-stimulating factor-deficient bone marrow stromal cell line OP9, derived from osteopetrotic mice, is known to support hematopoietic stem cell (HSC) expansion as well as hematopoietic differentiation of embryonic stem cells. Coculture of HSC in the OP9 system requires cytokine support to achieve significant cell expansion. Recently, we reported extensive expansion without cell senescence of cord blood (CB)-derived HSC cocultured with OP9 stromal cells for more than 18 weeks with a single cytokine support using human thrombopoietin (TPO). In this study, we evaluated the efficiency of the OP9/TPO coculture system to sustain long-term hematopoiesis of adult, granulocyte colony-stimulating factor mobilized human peripheral blood (PB) CD34(+) cells. Maximum cell expansion was attained during the first 4 weeks of coculture. At the same time, the maximum progenitor cell expansion was demonstrated by the production of colony-forming cells and cobblestone area-forming cells. In contrast to the expansion of CB CD34(+) cells, PB CD34(+) cells showed termination of cultures after 8 weeks, independent of the cell expansion rates attained. The evaluation of cell senescence by assessing the telomere length in most cultures showed no relevant telomere shortening, despite rapid decrease in telomerase activity. Interestingly, increases in telomere length were demonstrated. In conclusion, OP9/TPO system provides extensive stem cell expansion without concomitant telomere erosion for both CB and adult CD34(+) cells. Termination of adult CD34(+) cell cocultures seems to be independent of telomere length. © Mary Ann Liebert, Inc. 2009.
Keywords: adult; controlled study; nonhuman; cell proliferation; animal cell; mouse; telomere; animals; mice; mus; cd34 antigen; cell maturation; cell line; in vitro study; enzyme activity; cell assay; telomerase; time factors; cytokines; peripheral blood stem cell; hematopoietic stem cells; umbilical cord blood; blood cell; hematopoiesis; stroma cell; stromal cells; granulocyte colony stimulating factor; antigens, cd34; adult stem cell; cell aging; hematopoietic stem cell mobilization; isoenzymes; coculture; coculture techniques; thrombopoietin; cd34+ cell; colony forming unit; stem cell expansion; acid phosphatase
Journal Title: Stem Cells and Development
Volume: 18
Issue: 2
ISSN: 1547-3287
Publisher: Mary Ann Liebert, Inc  
Date Published: 2009-03-01
Start Page: 229
End Page: 234
Language: English
DOI: 10.1089/scd.2008.0069
PUBMED: 18491948
PROVIDER: scopus
DOI/URL:
Notes: --- - "Cited By (since 1996): 2" - "Export Date: 30 November 2010" - "CODEN: SCDTA" - "Source: Scopus"
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  1. Malcolm A S Moore
    549 Moore