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Macrophage development: IV. Effects of blood factors on macrophages from prenatal rat lung cultures
S P Sorokin1, N A McNelly, R F Hoyt
1Department of Anatomy and Neurobiology, Boston University School of Medicine, MA 02118.
Abstract:
Effects of colony-stimulating factors M-CSF, GM-CSF, G-CSF, and IL-3 were assessed on cells of macrophage lineage present in organ cultured 14-day prenatal rat lungs. Treatment groups were compared between one another and against control lungs grown on standard medium containing 40% fetal bovine serum without added factors, where a monoculture of macrophages rapidly develops from precursors present at explantation, leading to appearance of a large mature population on the pleural surface outside the lungs. Studies were carried out in living cultures and by light and electron microscopy using peroxidase-coupled isolectin B4 of Griffonia simplicifolia to identify macrophages and their precursors. In the first experiment, 14-day prenatal lung explants (14 + 0 days) containing macrophage precursors but not matured cells were exposed to individual CSFs for 7 days in an attempt to determine whether precursors are committed irrevocably to the macrophage line or can be altered by exposure to factors promoting significant granulocyte development. In succeeding experiments, 4- and 7-day-old cultures (14 + 4, 14 + 7 days) containing matured macrophages were targeted to see whether macrophage survival can be extended beyond expectations in controls and whether mitotic activity is stimulated. Recombinant CSFs were used at dosage levels known to promote colony formation in vitro (200-1,000 CFU/ml). Cultures exposed from prenatal day 14 to M-, GM-, G-CSF, or IL-3 yielded a monoculture of macrophages without exception. Populations developed in the presence of M- or GM-CSF were much larger than in controls or cultures grown with the other blood factors. GM-CSF-exposed cultures produced by far the largest macrophages, among them many multinucleate giant cells. Macrophages developed in the presence of G-CSF were also significantly larger than controls. Growth of the mature macrophage population was greatly stimulated by exposure to M-CSF or GM-CSF but not by IL-3 or G-CSF. Mitotic figures were noted in the coronas of emerged cells surrounding stimulated cultures, compared to none in the controls. Ultrastructurally, macrophages stimulated by M-CSF retained a mature appearance like macrophages in control, IL-3, and G-CSF treatment groups, whereas many in the GM-CSF group became less differentiated. As to long-term survival, a single 14-day explant was grown for 8 days on standard medium (the equivalent date for birth), then placed in a soft agar medium containing M-CSF.(ABSTRACT TRUNCATED AT 400 WORDS)
Insights
Colony-stimulating factors like M-CSF and GM-CSF significantly enhance macrophage development and survival in prenatal rat lung cultures. GM-CSF produced the largest macrophages, while M-CSF and GM-CSF promoted population growth and mitotic activity.
Area of Science:
- Developmental Biology
- Immunology
- Cell Biology
Background:
- Prenatal rat lung explants contain macrophage precursors.
- Organ cultures of prenatal rat lungs rapidly develop a monoculture of macrophages.
Purpose of the Study:
- To investigate the effects of colony-stimulating factors (CSFs) on macrophage lineage cells in organ-cultured prenatal rat lungs.
- To determine if CSFs can alter precursor commitment and enhance mature macrophage survival and proliferation.
Main Methods:
- Organ culture of 14-day prenatal rat lung explants.
- Treatment with recombinant M-CSF, GM-CSF, G-CSF, and IL-3.
- Light and electron microscopy using Griffonia simplicifolia isolectin B4 for macrophage identification.
Main Results:
- All tested CSFs induced a monoculture of macrophages.
- M-CSF and GM-CSF significantly increased macrophage population size and stimulated mitotic activity.
- GM-CSF produced the largest macrophages, including multinucleate giant cells, and some became less differentiated.
- G-CSF also increased macrophage size compared to controls.
Conclusions:
- M-CSF and GM-CSF are potent stimulators of macrophage proliferation and survival in developing lung tissue.
- CSFs can influence macrophage differentiation and morphology.
- The study provides insights into the regulation of lung macrophage development by hematopoietic growth factors.