STIMULATING SPECTRUM OF HUMAN RECOMBINANT MULTI-CSF (IL-3) ON HUMAN MARROW PRECURSORS - IMPORTANCE OF ACCESSORY CELLS
- 1 June 1988
- journal article
- research article
- Vol. 71 (6) , 1609-1614
Abstract
Recently, human multi-CSF was obtained by molecular cloning. In the present study, the effects of multi-CSF in vitro were investigated by comparative culture of whole bone marrow or progenitor cells obtained by sorting the cell fraction that binds the monoclonal antibody (MoAB) BI3C5 (CD 34). Multi-CSF stimulated erythroid (BFU-E), multipotential (CFU-GEMM) and eosinophil (CFU-Eo) colonies in cultures of the progenitor cell enriched fraction, whereas (besides BFU-E, CFU-GEMM, and CFU-Eo) granulocyte (CFU-G), granulocyte-macrophage (CFU-GM), and macrophage (CFU-M) colony-forming cells also were stimulated by multi-CSF when unfractionated bone marrow was cultured. Reconstitution of the progenitor cell fraction (BI3C5 positive) with the BI3C5-negative population restored the broad spectrum of progenitor cell stimulation. This suggested that accessory cells are required for expression of the full spectrum of progenitor cell stimulation by multi-CSF. Subsequently, specific marrow cell populations, including T lymphocytes, granulocytic cells, and monocytes, were prepared by using selected MoAbs in complement-mediated lysis or cell sorting, added to cultures of hematopoietic progenitors and tested for accessory cell function. The results demonstrate that small numbers of monocytes permit the stimulation of CFU-G, CFU-GM, and CFU-M by mutli-CSF. These monocyte-dependent stimulating effects on CFU-G, CFU-GM, and CFU-M could also be achieved by adding recombinant GM-CSF as a substitute for monocytes to the cultures. Therefore, multi-CSF most likely has direct stimulative effects on BFU-E, CFU-GEMM, and CFU-Eo and indirect effects on CFU-G, CFU-GM, and CFU-M in the presence of monocytes.This publication has 14 references indexed in Scilit:
- Macrophage growth factor CSF-1 stimulates human monocyte production of interferon, tumor necrosis factor, and colony stimulating activity.The Journal of Immunology, 1986
- Recombinant Human Granulocyte Colony-Stimulating Factor: Effects on Normal and Leukemic Myeloid CellsScience, 1986
- Biologic properties of molecularly cloned and expressed murine interleukin-3Blood, 1985
- Identification of a membrane glycoprotein associated with haemopoietic progenitor cellsLeukemia Research, 1985
- M2, A novel myelomonocytic cell surface antigen and its distribution on leukemic cellsInternational Journal of Cancer, 1984
- Biologic properties of homogeneous interleukin 3. I. Demonstration of WEHI-3 growth factor activity, mast cell growth factor activity, p cell-stimulating factor activity, colony-stimulating factor activity, and histamine-producing cell-stimulating factor activity.The Journal of Immunology, 1983
- GRANULOCYTE-MACROPHAGE COLONY-STIMULATING AND BINDING ACTIVITIES OF PURIFIED HUMAN URINARY COLONY-STIMULATING FACTOR TO MURINE AND HUMAN-BONE MARROW-CELLS1982
- MONOCLONAL-ANTIBODIES THAT DETECT DIFFERENTIATION SURFACE-ANTIGENS ON HUMAN MYELOMONOCYTIC CELLS1982
- STUDIES OF HUMAN PLURIPOTENTIAL HEMATOPOIETIC STEM-CELLS (CFU-GEMM) INVITRO1981
- GRANULO-ERYTHROPOIETIC COLONIES IN HUMAN BONE-MARROW, PERIPHERAL-BLOOD, AND CORD BLOOD1978