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Original Article

Human Immunodeficiency Virus Infection of Human Bone Marrow Stromal Myoid Cells

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Pages 335-340 | Received 28 Dec 1995, Accepted 06 May 1996, Published online: 08 Jul 2009

References

  • Scadden D T, Zon L I, Groopman J E. Pathcphysiology and management of HIV-associated hematologic disorders. Blood 1989; 74: 1455–1463
  • Spivak J L, Bender B S, Quinn T C. Hematologic abnormalities in the acquired immune deficiency syndrome. Am J Med 1984; 77: 224–228
  • Castella A, Croxson T S, Mildvan D, Witt D H, Zalusky R. The bone marrow in AIDS: a hislologic, hematologic, and microbiologic study. Am J Clin Pathol 1985; 84: 425–432
  • Spivak J L, Selonick S E, Quinn T C. Acquired immune deficiency syndrome and pancytopenia. J Am Med Assoc 1983; 250: 3084–3087
  • Treacy M, Lai L, Costello C, Clark A. Peripheral blood and bone marrow abnormalities in patients with HIV-related disease. Br J Haematol 1987; 65: 289–294
  • Franco C M, Hendrix L E, Lokey J L. Bone marrow abnormalities in the acquired immunodeficiency syndrome. Ann Intern Med 1984; 101: 275–276
  • Geller S A, Muller R, Greenberg M L, Siegal F P. Acquired immunodeficiency syndrome: distinctive features on bone marrow biopsies. Arch Path Lab Med 1985; 109: 138–141
  • Schneider D R, Picker L J. Myelodysplasia in the acquired immune deficiency syndrome. Am Clin Pathol 1985; 184: 144–152
  • Folks T M, Kessler S W, Orenstein J M, Justement J S, Jaffe E S, Fauci A S. Infection and replication of HIV-1 in purified progenitor cells of normal human bone marrow. Science 1988; 42: 919–922
  • Sakaguchi M, Sato T, Groopman J E. Human immunodeficiency virus infection of megakaryocytes ceils. Blood 1991; 77: 481–485
  • Stella C C, Ganser A, Hoelzer D. Defective in vitro growth of the hemopoietic progenitor cells in the acquired immunodeficiency syndrome. J Clin Invest 1987; 80: 286–293
  • Zucker-Franklin D, Cao Y. Megakaryocytes of human immunodeficiency virus-infected individuals express viral RNA. Proc Natl Acad Sci USA 1989; 86: 5595–5599
  • von Laer D, Hufert F T, Fenner T E, Schwander S, Dietrich M, Schmitz H, Kern P. CD34+ hematopoietic progenitor cells are not a major reservoir of the human immunodeficiency virus. Blood 1990; 76: 1281–1286
  • Molina J-M, Scadden D T, Sakaguchi M, Fuller B, Woon A, Groopman J E. Lack of evidence or infection of or effect on growth of hematopoietic progenitor cells after in vivo or in vitro exposure to human immunodeficiency virus. Blood 1990; 76: 2476–2482
  • Dexter T M. Stromal cell-associated haemopoiesis. J Cell Physiol 1980; 87–95, (Suppl 1)
  • Gartner S, Kaplan H S. Long-term culture of human bone marrow cells. Proc Natl Acad Sci USA 1980; 77: 4756–4759
  • Gordon M Y, Riley G P, Watt S M, Greaves M F. Compartmen-talization of a haemopoietic growth factor (GM-CSF) by glycosaminoglycans in the bone marrow microenvironment. Nature 1987; 326: 403–405
  • Gordon M Y. Granulopoietic effects of factors produced by cultured human bone marrow fibroblastoid cells. Stem Cells 1981; 1: 180–187
  • Tsai S, Sieff C A, Nathan D G. Stromal cell-associated erythro-poiesis. Blood 1986; 67: 1418–1426
  • Allen T D, Dexter T M. The essential cells of the hemopoietic microenvironment. Exp Hematol 1989; 12: 517–523
  • Liesveld J L, Abbond C N, Duerst R E, Ryon D H, Brennan J K, Lichtman M A. Characterization of human marrow stromal cells: role in progenitor cell binding and granulopoiesis. Blood 1989; 73: 1794–1800
  • Liesveld J L, Abbond C N, Duerst R E, Ryon D H, Brennan J K, Lichtman M A. Characterization of human marrow stromal cells: role in progenitor cell binding and granulopoiesis. Blood 1989; 73: 1794–1800
  • Boswell H S, Albrect P R, Shupe R, Williams D E, Burgess J. Role of stromal populations in hemopoietic stem cell proliferation. I. Physically distinct subpopulations of hemopoietic stem cells and stromal progenitors determine long-term culture hemopoiesis. Exp Hematol 1998; 15: 46–53
  • Benteley S A. A close cell-cell interaction required for stem cell maintenance in continous bone marrow culture. Exp Hematol 1981; 9: 303–311
  • Gordon M Y, Goldman J M, Gordon-Smith E C. Spatial and functional relationship between human hemopoietic and marrow stromal cells in vitro. Intern Cell Clon 1983; 1: 429–439
  • Gordon M Y. Adhesive properties of haemopoietic stem cells. Br J Haematol 1988; 68: 149–154
  • McElrath M J, Pruett J E, Cohn Z A. Mononuclear phagocytes of blood and bone marrow: comparative roles as viral reservoirs in human immunodeficiency virus type 1 infections. Proc Natl Acad Sci USA 1989; 86: 675–679
  • Scadden D T, Zeira M, Woon A, Wang Z, Schieve L, Ikeuchi K, Lim B, Groopman J E. Human immunodeficiency virus infection of human bone marrow stromal fibroblast. Blood 1990; 76: 317–322
  • Bonanno E, Ercoli L, Missori P, Rocchi G, Spagnoli L G. Homogeneus stromal cell population from normal human adult bone marrow espressing alpha-SMA filaments. Lab Invest 1994; 71(2)308–315
  • Gown A M, Tsukada T, Ross R. Human atherosclerosis. II. Immunocytochemical analysis of the cellular composition of human atherosclerotic lesions. Am J Pathol 1986; 125: 191–207
  • Wilks D, Walker L, O'Brien J, Habeshaw J, Dalgheish A.G. Differences in affinity of anti-CD4 monoclonal antibodies predict their effects on syncytium induction by human immunodeficiency virus. Immunology 1990; 71: 10–15
  • Popovic M, Sarngadharan M G, Read E, Gallo R G. Detection, isolation and continous production of cytopathic retroviruses (HTLV-III) from patients with AIDS and pre-AIDS. Science 1984; 224: 497–500
  • Andreoni M, Sarmati L, Parisi S G, Ercoli L, Rocchi G. Efficient and reproducible new semimicromethod for the detection and titration of HiV in human plasma. J Med Virol 1992; 38: 207–213
  • Albert J, Fenjo M E. Simple, sensitive and specific detection of human immunodeficiency virus type-1 in clinical specimens by polymerase chain reaction with nested primers. J Clin Micro-biol 1990; 7: 1560–1564
  • Schmitt-Graff A, Skalli O, Gabbiani G. Alpha-smooth muscle actin is expressed in a subset of bone marrow stromal cells in normal and pathological conditions. Virch Arch B Cell Pathol 1989; 157: 291–302
  • Peled A, Zipori D, Abramsky O, Ovadia H, Sheren E. Expression of alpha-smooth muscle actin in murine bone marrow stromal cells. Blood 1991; 78: 304–309
  • Charbord P, Gown A M, Keating A, Singer J W. CGA-7 and HHF, two monoclonal antibodies that recognize muscle actin and react with adherent cells in human long-term bone marrow cultures. Blood 1985; 66: 1138–1142
  • Charbord P, Lerat H, Newton I, Tamayo E, Gown A M, Singer J W, Herve P. The cytoskeleton of stromal cells from human bone marrow cultures resembles that of cultured smooth muscle cells. Exp Hematol 1990; 18: 276–282
  • McKeating J A, Griffiths P D, Weiss R A. HIV susceptibility conferred to human fibroblasts by cytomegalovirus-induced Fc receptor. Nature 1990; 343: 659–661
  • Butcher E C, Weissman I L. Lymphoid tissue and organs. Fundamental immunology, 2nd edn, W E Paul. Raven Press, New York 1989; 117–137

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