This proposal describes a series of studies of the origin, composition, and function of the human in vitro hematopoietic microenvironment. Using adherent stromal cells from long-term marrow cultures as candidate microenvironmental cells, aspects of their growth, origin, hematopoietic function, antigenic characteristics, and abnormalities in disease will be examined. These studies are in part possible due to the development of a new technique for immortalizing these cells using simian virus 40. With this method, clonable microenvironmental cell lines can be produced from most patients and the origin, growth and function can be studied. A unique feature of these cell lines is that they appear to differentiate into cells with hematopoietic as well as stromal characteristics despite rigorous subcloning. This proposal will examine aspects of the control of cell differentiation of these transformed lines. Monoclonal antibodies will be produced that recognize cell surface molecules on stromal cells and then used to evaluate the hematopoietic function of these molecules. Specifically, the ability of these antibodies to impair hematopoietic function of stromal cells will be tested. Growth control of stromal cells and hematopoietic stimulating factor production will be assessed from cell lines adapted to serum-free growth. Differences between transformed and non-transformed stromal cells will be examined on molecular as well as on a functional level. The effect of stromal cells and factors they may produce will be assessed on colony-forming cell progenitors that appear only to proliferate in long-term marrow cultures. Overall, these studies should enhance knowledge of the origin, composition, and function of the hematopoietic microenvironment.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL031782-08
Application #
3342989
Study Section
Hematology Subcommittee 2 (HEM)
Project Start
1983-09-30
Project End
1992-08-31
Budget Start
1991-09-01
Budget End
1992-08-31
Support Year
8
Fiscal Year
1991
Total Cost
Indirect Cost
Name
Fred Hutchinson Cancer Research Center
Department
Type
DUNS #
075524595
City
Seattle
State
WA
Country
United States
Zip Code
98109
Sensebe, L; Li, J; Lilly, M et al. (1995) Nontransformed colony-derived stromal cell lines from normal human marrows. I. Growth requirement and myelopoiesis supportive ability. Exp Hematol 23:507-13
Takahashi, G W; Moran, D; Andrews 3rd, D F et al. (1994) Differential expression of collagenase by human fibroblasts and bone marrow stromal cells. Leukemia 8:305-8
Takahashi, G W; Montgomery, R B; Stahl, W L et al. (1994) Pentoxifylline inhibits tumor necrosis factor-alpha-mediated cytotoxicity and cytostasis in L929 murine fibrosarcoma cells. Int J Immunopharmacol 16:723-36
Takahashi, G W; Andrews 3rd, D F; Lilly, M B et al. (1993) Effect of granulocyte-macrophage colony-stimulating factor and interleukin-3 on interleukin-8 production by human neutrophils and monocytes. Blood 81:357-64
Bernstein, I D; Singer, J W; Smith, F O et al. (1992) Differences in the frequency of normal and clonal precursors of colony-forming cells in chronic myelogenous leukemia and acute myelogenous leukemia. Blood 79:1811-6
Singer, J W; Fialkow, P J (1992) Nature of remission in acute myeloid leukemia: more questions than answers. Leukemia 6 Suppl 1:60-3
Singer, J W; Bianco, J A; Takahashi, G et al. (1992) Effect of methylxanthine derivatives on T cell activation. Bone Marrow Transplant 10:19-25
Singer, J W; Fialkow, P J (1991) Clonal remissions in acute nonlymphocytic leukemia: implications for curability. Semin Hematol 28:1-4
Nemunaitis, J; Tompkins, C K; Andrews, D F et al. (1991) Transforming growth factor beta expression in human marrow stromal cells. Eur J Haematol 46:140-5
Andrews, R G; Singer, J W; Bernstein, I D (1990) Human hematopoietic precursors in long-term culture: single CD34+ cells that lack detectable T cell, B cell, and myeloid cell antigens produce multiple colony-forming cells when cultured with marrow stromal cells. J Exp Med 172:355-8

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