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Modulation of phenotypic and functional properties of human peripheral blood monocytes by IL-4
A A te Velde1, J P Klomp, B A Yard
1Division of Immunology, Netherlands Cancer Institute, Amsterdam.
Abstract:
Highly purified peripheral blood monocytes were cultured in the presence of rIL-4. Major changes in the morphology of the monocytes were observed. After day 5 of culturing the cells acquired a macrophage-like appearance, with increased cell size and extensive processes, suggesting that IL-4 may induce monocyte-macrophage differentiation. This notion is supported by the observed increased expression of MHC class II Ag, which is thought to be associated with monocyte differentiation. Exposure of monocytes to IL-4 resulted in a dose-dependent increase of the expression of MHC class II Ag, which became apparent after only 20 h of incubation. Maximal expression was obtained after incubation for 6 days, and persisted throughout the whole culture period. Similarly, IL-4 increased the expression of R for C3bi and p150.95 Ag, two members of the leukocyte function-associated Ag 1 family, whereas the expression of the third member, leukocyte function-associated Ag 1, remained unchanged during culture. Furthermore, it was shown that IL-4 inhibited the secretion of cytostatic and chemotactic compounds. Supernatants of monocytes cultured with IL-4 were, in contrast to control cultures, much less effective in inhibiting the growth of A375 melanoma cells. In addition, these supernatants failed to direct the migration of freshly isolated monocytes in a chemotaxis assay. Further analysis revealed that these supernatants exhibited reduced IL-1 activity, as measured in a mouse thymocyte proliferation assay, which might explain the low cytostatic and chemotactic activity. Taken together these results show that IL-4 modulates monocyte phenotype and function and may induce monocyte-macrophage differentiation in vitro.
Insights
Interleukin-4 (IL-4) promotes monocyte differentiation into macrophage-like cells in vitro. This immune modulation involves increased MHC class II antigen expression and altered functional activities.
Area of Science:
- Immunology
- Cell Biology
Background:
- Peripheral blood monocytes are key immune cells.
- Interleukin-4 (IL-4) is a cytokine with known immunomodulatory functions.
Purpose of the Study:
- To investigate the effects of IL-4 on human monocyte differentiation and function.
- To determine if IL-4 induces monocyte-to-macrophage differentiation in vitro.
Main Methods:
- Culturing highly purified peripheral blood monocytes with recombinant IL-4.
- Morphological analysis of cells.
- Quantification of major histocompatibility complex (MHC) class II antigen expression.
- Assessing expression of leukocyte function-associated antigen (LFA) family members.
- Measuring secretion of cytostatic and chemotactic compounds.
- Evaluating IL-1 activity in a mouse thymocyte proliferation assay.
Main Results:
- IL-4 induced significant morphological changes, leading to macrophage-like cells.
- Increased dose-dependent expression of MHC class II antigens was observed.
- IL-4 modulated the expression of C3bi and p150.95 antigens, but not LFA-1.
- Supernatants from IL-4 treated monocytes showed reduced cytostatic and chemotactic activity.
- Reduced IL-1 activity was detected in IL-4 treated monocyte supernatants.
Conclusions:
- IL-4 promotes monocyte differentiation into macrophage-like cells in vitro.
- IL-4 modulates monocyte phenotype and function, including antigen expression and secretion profiles.
- These findings highlight IL-4's role in regulating monocyte-macrophage lineage commitment and immune responses.