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Haemopoiesis

Adhesion of Hematopoietic Precursors to Human Stroma: Studies Using Normal Marrow Stromal Myofibroblasts and a Stromal Cell Line Transformed by SV40

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Pages 401-417 | Received 18 Sep 1998, Published online: 13 Jul 2016

References

  • Burckardt, R. (1970). Farbaltas der klinischen Histopathologie von Knochenmark und Knochen. Springer Verlag, Berlin.
  • Galmiche, M. C., Koteliansky, V. E., Brière, J., Hervé, P. and Charbord, P. (1993). Stromal cell from human long-term marrow culture are mesenchymal cell that differentiate following a vascular smooth muscle differentiation pathway. Blood, 78, 66–76.
  • Charbord, P., Tavian, M., Humeau, L. and Peault, B. (1996). Early ontogeny of the human marrow from long bones: an immunohistochimical study of hematopoiesis and its microenvironment. Blood, 87, 4109–4119.
  • Charbord, P. (1995). The maintenance of hemopoietic stem cells in human long-term marrow culture. In Hematopoietic Stem Cells Biology and Therapeutic Application; Eds. Levitt D, Mertelsmann, Marcel Dekker, New York, pp. 151–169.
  • Kincade, P. W. (1991). Molecular interaction between stromal cells and B lymphocyte precursors. Semin. Immunol, 3, 379–390.
  • Eaves, A. C., Cashman, J. D., Gaboury, L. A. and Eaves, C. J. (1987). Clinical significance of long-term cultures of myeloid blood cells. CRC Critical Reviews in Oncology/Hematology, 7, 125–138.
  • Charbord, P., Tamayo, E., Saeland, S., Duvert, V., Poulet, J., Gown, A. M. and Hervé, P. (1991). Granulocyte-macrophage colony-stimulating factor (GM-CSF) in human long-term bone marrow cultures: endogenous production in the adherent layer and effect of exogenous GM-CSF on granulomonopoiesis. Blood, 78, 1230–1236.
  • Coulombel, L., Eaves, A. C. and Eaves, C. J. (1983). Enzymatic treatment of long-term marrow cultures reveals the preferential location of hemopoietic progenitors in the adherent layer. Blood, 62, 291–297.
  • Cashman, J., Eaves, A. C. and Eaves, C. J. (1985). Regulated proliferation of primitive hematopoietic progenitors cells in long-term human marrow cultures. Blood, 16, 1002–1005.
  • Singer, J. W., Keating, A., Cuttner, J., Gown, A. M., Jacobson, R., Killen, P. D., Moohr, J. W., Najfeld, V., Powell, J., Sander, J., Striker, G. E. and Fialkow, P. J. (1984). Evidence for a stem cell common to hematopoiesis and its in vitro microenvironment: studies of patients with clonal hematopoietic neoplasia. Leuk. Res., 8, 535–545.
  • Sappino, A. P., Schürch, W. and Gabbiani, G. (1990). Biology of disease. Differentiation repertoire of fibroblastic cells: expression of cytoskeletal proteins as marker of phenotypic modulations. Laboratory Invest., 63, 144–161.
  • Lazard, D., Sastre, X., Glukhova, M. A., Thiery, J. P. and Koteliansky, V. E. (1993). Expression of smooth muscle-specific proteins in myoepithelium and stromal myofibroblasts of normal and malignant human breast tissue. Proc. Natl. Acad. Sci., 90, 999–1003.
  • Lerat, H., Lissitzky, J. C., Singer, J. W., Keating, A., Hervé, P. and Charbord, P. (1993). Role of stromal cells and macrophages in fibronectin biosynthesis and matrix assembly in human long-term marrow cultures. Blood, 82, 1480–1492.
  • Spooncer, E., Gallagher, J. T., Krizsa, F. and Dexter, T. M. (1983). Regulation of haemopoiesis in long-term bone marrow culture IV. Glycosaminoglycan synthesis and the stimulation of haemopoiesis by β-D-Xylosides. J. Cell. Biol., 96, 510–514.
  • Zuckerman, K. S., Rhoder, R. K., Goodman, D. D., Patel, V. R., Sparks, B., Wells, J., Wicher, M. S. and Mayo, L. A. (1985). Inhibition of collagen deposition in the extracellular matrix prevents the establishment of a stroma supportive of hematopoiesis in long-term murine bone marrow cultures. J. Clin. Invest., 75, 970–975.
  • Simmons, P. J., Masinovsky, B., Longenecker, B. M., Berenson, R., Torok-Storb, B. and Gallatin, W. (1992). Vascular cell adhesion molecule-1 expressed by bone marrow stromal cells mediates the binding of hematopoietic progenitor cells. Blood, 80, 388–395.
  • Teixido, J., Hemler, M. E., Greenberger, J. S. and Anklesaria, P. (1992). Role of β1 and β2 integrins in the adhesion of human CD34hi stem cells to bone marrow stroma. J. Clin. Invest., 90, 358–367.
  • Verfallie, C., Blakolmer, K. and Mc Glave, P. (1990). Purified primitive human hematopoietic progenitor cells with long-term in vitro repopulating capacity adhere selectively to irradiated bone marrow stroma. J. Exp. Med., 172, 509–520.
  • Vuillet-Gangler, M. H., Breton-Gorius, J., Vainchenker, W., Guichard, J., Leroy, C., Tchernia, G. and Coulombel, L. (1990). Loss of attachment to fibronectin with terminal human erythroid differentiation. Blood, 75, 865–873.
  • Campbell, A. D., Long, M. W. and Wicher, M. S. (1990). Developmental regulation of granulocytic cell binding to hemonectin. Blood, 76, 1758–1764.
  • Deryugina, E. I. and Müller-Sieburg, C. E. (1993). Stromal cells in long-term cultures: keys to elucidation of hematopoietic development? Critical Rev. in Immunol, 13, 115–150.
  • Singer, J. W., Charbord, P., Keating, A., Nemunaitis, J., Raugi, G., Wight, T. N., Lopez, J. A., Roth, G. J., Down, L. W. and Fialkow, P. J. (1987). Simian virus 40-transformed adherent cells from human long-term marrow cultures: cloned cell line produce cells with stromal and hematopoietic characteristics. Blood, 70, 464–474.
  • Thalmaier, K., Meissner, P., Reisbach, G., Flak, M., Brechtel, A. and Dörmer, P. (1994). Establishment of two permanent human bone marrow stromal cell lines with long-term post irradiation feeder capacity. Blood, 83, 1799–1807.
  • Williams, D. A., Rosenblatt, M. F., Beier, D. R. and Cone, R. D. (1988). Generation of murine stromal cell lines supporting hematopoietic stem cell proliferation by use of recombinant retrovirus vectors encoding simian virus 40 large T antigen. Mol. Cel. Biol., 8, 3864–3871.
  • Singer, I. I. (1979). The fibronexus: a transmembrane association of fibronectin-containing fibers and bundles of 5nm microfilaments in hamster and human fibroblasts. Cell, 16, 675–685.
  • Gartner, S. and Kaplan, H. S. (1980). Long-term culture of human bone marrow cells. Proc. Natl. Acad. Sci., 77, 4756–4759.
  • Keating, A., Horsfall, W., Hawley, R. G. and Toneguzzo, F. (1990). Effect of different promoters on expression of genes introduced into hematopoietic and marrow stromal cells by electroporation. Exp. Hematol., 18, 99–102.
  • Andreoni, C., Moreau, I. and Rigal, D. (1990). Longterm culture of human bone marrow. I. Characterization of adherent cells in flowcytometry. Exp. Hematol., 18, 431–437.
  • Sensebé, L., Deschaseaux, M. L., Li, J., Hervé, P. and Charbord, P. (1997). The broad spectrum of cytokine gene expression by myoid cells from the human marrow microenvironment. Stem Cells, 15, 133–143.
  • Moreau, I., Duvert, V., Caux, L., Galmiche, M. C., Charbord, P., Banchereau, J. and Sealand, S. (1993). Myofibroblastic stromal cells isolated from human bone marrow induce the proliferation of both early myeloid and B-lymphoid cells. Blood, 82, 2396–2405.
  • Simmons, P. J. and Torok-Strob, B. (1991). Identification of stromal cell precursors in human bone marrow by a novel monoclonal antibody, Stro-1. Blood, 78, 55.
  • Ronnov-Jessen, L., Celis, J. E., Van Duers, B. and Petersen, O. W. (1992). A fibroblast-associated antigen: Characterization in fibroblast and immunoreactivity in smooth muscle differentiated stromal cell. J. Histochem. Cytochem., 40, 475–486.
  • Liesveld, J. L., Winslow, J. M., Kempski, M. C., Ryan, D. H., Brennan, J. K. and Abboud, C. N. (1991). Adhesive interactions of normal and leukemic human CD34+ myeloid progenitors: role of marrow stromal, fibroblast and cytomatrix components. Exp. Hematol., 19, 63–70.
  • Belkin, V. M., Belkin, A. M. and Koteliansky, V. E. (1990). Human smooth muscle VLA-1 integrin: purification, substrate specificity, localisation in aorta and expression during development. J. Cell Biol, 111, 2159–2170.
  • Ronnov-Jessen, L., Petersen, O. W., Koteliansky, V. E. and Bissell, M. J. (1995). The origin of myofibroblasts in breast cancer. J. Clin. Invest., 95, 859–873.
  • Majesky, M. W., Benditt, E. P. and Schwartz, S. M. (1988). Expression and developmental control of platelet-derived growth factor A-chain and B-chain/Sis genes in rat aortic smooth muscle cells. Proc. Natl. Acad. Sci., 85, 1524.
  • Glukhova, M., Koteliansky, V., Fondacci, C., Marotte, F. and Rappaport, L. (1993). Laminin variants and integrin laminin receptors in developing and adult human smooth muscle. Dev. Biol, 157, 437.
  • Verderame, M., Alcorta, D., Egner, M., Smith, K. and Pollack, R. (1980). Cytoskeletal F-actin patterns quantitated with fluorescein in isothiocyanate-phalloidin in normal and transformed cells. Proc. Natl. Acad. Sci., 77, 6624–6628.
  • Vollet, J. J., Brugge, J. S., Noonan, C. A. and Butel, J. S. (1977). The role of SV40 gene A in the alteration of microfilaments in transformed cells. Exp. Cell Res., 105, 119–126.
  • Pollack, R., Osborn, M. and Weber, K. (1974). Patterns of organization of actin and myosin in normal and transformed cultured cells. Proc. Natl. Acad. Sci., 72, 994–998.
  • Hansell, E. J., Frish, S. M., Tremble, P., Murnane, J. P. and Werb, Z. (1995). Simian virus 40 transformation alters the actin cytoskeleton, expression of matrix metalloproteinases and inhibitors of metalloproteinases and invasive behavior of normal and ataxiatelangiectasia human skin fibroblasts. Biochem. Cell Biol, 73, 373–389.
  • Shigeru, K., Satoh, Y., Ikemura, K., Konishi, T., Ohji, T., Karasaki, Y., Higashi, K. and Gotoh, S. (1995). Alteration of expression of the cytoskeleton after immortalization of human fibroblasts. Cell structure and function, 20, 107–115.
  • Burridge, K, Fath, K., Kelly, T., Nuckolls, G. and Turner, C. (1988). Focal adhesion: transmembrane junction between the extracellular matrix and cytoskeleton. Ann. Rev. Cell. Biol, 4, 487–525.
  • Nuckolls, G. H., Turner, C. E. and Burridge, K. (1990). Functional studies of the domains of talin. J. Cell Biol, 110, 1635–1644.
  • Sontag, E., Fedorov, S., Kamibayashi, C., Robbins, D., Cobb, M. and Mumby, M. (1993). The interaction of SV40 small tumor antigen with protein phosphatase 2A stimulates the MAP kinase pathway and induces cell proliferation. Cell, 75, 887–897.
  • Morhem, V. B. and Shreiber, O. (1985). A monoclonal antibody against basal cells of human epidermis. J. Clin. Invest., 76, 1978–1983.
  • Stamenkovic, I., Aruffo, A., Amiot, M. and Seed, B. (1991). The hematopoietic and epithelial forms of CD44 are distinct polypeptides with different adhesion potentials for hyaluronate-bearing cells. EMBO J., 10, 343–348.
  • Cicuttini, F. M., Martin, M., Salvaris, E., Ashman, L., Begley, C. G., Novotny, J., Maher, D. and Boyd, A. W. (1992). Support of human cord blood progenitor cells on human stromal cell lines transformed by SV40 large T antigen under the influence of an inducible (metallothionein) promoter. Blood, 80, 102–112.
  • Vicart, P., Schwartz, B., Vandewalle, A., Bens, M., Delouis, C., Panthier, J. J., Pournin, S., Babinet, C. and Paulin, D. (1994). Immortalization of multiple cell types from transgenic mice using a transgene containing the vimentin promoter and a conditional oncogen. Exp. Cell Res., 214, 35–45.

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