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Published on: December 26, 2017
Iron down-regulates macrophage anti-tumour activity by blocking nitric oxide production
L Harhaji1, O Vuckovic, D Miljkovic
1Department of Neurobiology and Immunology, Institute for Biological Research, University of Belgrade, Belgrade, Serbia and Montenegro. buajk@yahoo.com
Abstract:
Although the inhibitory effect of iron on macrophage production of tumoricidal free radical nitric oxide (NO) has been reported, its possible influence on macrophage anti-tumour activity has not been established. In the present study, FeSO4 markedly reduced IFN-gamma + LPS-induced NO synthesis in mouse and rat macrophages. The effect of iron coincided with the loss of macrophage cytotoxic activity against NO-sensitive C6 rat astrocytoma and L929 mouse fibrosarcoma cell lines, as measured by MTT assay for cellular respiration and the crystal violet test for cell viability. Tumour cell survival did not improve further in the presence of FeSO4 if macrophage NO release and cytotoxicity were already blocked by aminoguanidine. In accordance with the results obtained with exogenous iron, cell membrane permeable iron chelator o-phenanthroline enhanced both macrophage NO release and anti-tumour activity. Iron also down-regulated NO production and increased the viability of L929 fibrosarcoma cells stimulated with IFN-gamma + LPS in the absence of macrophages. However, neither NO release nor cell viability was affected by iron addition to cultures of the C6 astrocytoma cell line. Iron was unable to prevent L929 and C6 cell death induced by the NO releasing chemicals SNP and SIN-1, indicating that iron-mediated inhibition of NO synthesis, rather than interference with its cytotoxic action, was responsible for the protection of tumour cells. Collectively, these results indicate that iron might protect tumour cells by reducing both macrophage and tumour cell-derived NO release.
Insights
Iron inhibits nitric oxide (NO) production in macrophages and tumor cells, reducing their anti-tumor activity. This iron-mediated NO suppression protects tumor cells from destruction, highlighting a novel mechanism in cancer progression.
Area of Science:
- Immunology
- Cancer Biology
- Biochemistry
Background:
- Iron's inhibitory effect on nitric oxide (NO) production by macrophages is known.
- The impact of iron on macrophage anti-tumor activity remains unclear.
Purpose of the Study:
- To investigate iron's influence on macrophage anti-tumor activity.
- To determine the mechanism by which iron affects tumor cell viability.
Main Methods:
- Macrophages were treated with iron (FeSO4) and stimulated with IFN-gamma + LPS.
- Macrophage cytotoxicity was assessed using MTT and crystal violet assays.
- Nitric oxide (NO) synthesis was measured.
- Iron chelators and NO-releasing compounds were used to elucidate mechanisms.
Main Results:
- Iron significantly reduced NO synthesis and macrophage cytotoxicity against tumor cells.
- Iron protected tumor cells by decreasing NO production, not by interfering with NO's cytotoxic action.
- Iron also reduced NO production in tumor cells themselves.
- An iron chelator enhanced macrophage NO release and anti-tumor activity.
Conclusions:
- Iron protects tumor cells by suppressing nitric oxide (NO) production in both macrophages and tumor cells.
- This iron-mediated inhibition of NO synthesis represents a novel mechanism contributing to tumor progression.
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