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Artificial Antigen Presenting Cell aAPC Mediated Activation and Expansion of Natural Killer T Cells
Published on: December 29, 2012
Arsenite suppresses IL-2-dependent tumoricidal activities of natural killer cells
Daigo Sumi1, Hiromasa Tsuyama1, Tomoko Ogawa1
1Laboratory of Molecular Nutrition and Toxicology, Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Yamashiro-cho, Tokushima 770-8514, Japan.
Abstract:
Chronic exposure to arsenic causes cancers in various organs including the skin, liver, lung, and bladder in humans, but the mechanisms of the multi-organ carcinogenicity of arsenic remain unknown. Natural killer (NK) cells play important roles in the immune surveillance and elimination of tumor cells. Although accumulating evidence has indicated that arsenic has immunosuppressive properties, little is known about the effects of arsenic on the tumoricidal functions of NK cells. We examined the effects of arsenite on the cytotoxic activities of human and mouse NK cells toward target tumor cells. Exposure of human NK-92 cells and primary mouse NK cells to sublethal doses of arsenite reduced the IL-2-activated cytotoxic activities toward human K562 cells and murine YAC-1 cells, respectively. NK cells recognize target cells via integrated signals from both activating and inhibitory receptors and induce apoptosis of target cells via a granzyme/perforin system. We found that exposure of NK-92 cells to arsenite diminished the IL-2-activated down-regulation of the inhibitory receptors, KIR2DL2 and KIR2DL3, and the up-regulation of granzyme B and lymphotoxin-α. The IL-2-activated increases in secretion of interferon-γ and IL-10 were also slightly reduced by arsenite. Thus, arsenite suppressed the IL-2-activated cytotoxic activity of NK cells by disrupting multiple pathways required for the recognition and killing of target tumor cells. Our findings provide new insights into the roles of NK cell-mediated tumor immunity in cancer development by arsenic.
Insights
Arsenic exposure impairs natural killer (NK) cell anti-tumor activity by disrupting their ability to recognize and kill cancer cells. This study reveals how arsenic compromises immune surveillance, potentially contributing to multi-organ cancer development.
Area of Science:
- Immunology
- Toxicology
- Cancer Research
Background:
- Chronic arsenic exposure is linked to various human cancers, but the underlying mechanisms are unclear.
- Natural killer (NK) cells are crucial for immune surveillance against tumors.
- Arsenic is known to have immunosuppressive effects, but its impact on NK cell tumoricidal function is poorly understood.
Purpose of the Study:
- To investigate the effects of arsenite on the cytotoxic functions of human and mouse NK cells.
- To elucidate the molecular mechanisms by which arsenite affects NK cell-mediated tumor cell killing.
Main Methods:
- Human NK-92 cells and primary mouse NK cells were exposed to sublethal doses of arsenite.
- Cytotoxic activity against target tumor cells (K562 and YAC-1) was measured.
- Expression of NK cell receptors and cytotoxic molecules (granzyme B, lymphotoxin-α, interferon-γ, IL-10) was analyzed.
Main Results:
- Arsenite exposure reduced the interleukin-2 (IL-2)-activated cytotoxic activity of both human and mouse NK cells.
- Arsenite diminished the IL-2-induced down-regulation of inhibitory receptors (KIR2DL2, KIR2DL3) and up-regulation of granzyme B and lymphotoxin-α.
- Arsenite slightly reduced IL-2-activated secretion of interferon-γ and IL-10.
Conclusions:
- Arsenite suppresses NK cell cytotoxic activity by interfering with multiple pathways essential for target cell recognition and apoptosis induction.
- These findings offer new insights into the role of NK cell-mediated immunity in arsenic-induced multi-organ carcinogenesis.
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