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Atomic Absorbance Spectroscopy to Measure Intracellular Zinc Pools in Mammalian Cells
Published on: May 16, 2019
Zinc-altered immune function
1Institute of Immunology, University Hospital, Technical University of Aachen, D-52074 Aachen, Germany.
Insights
Zinc is crucial for immune cells, with deficiency impairing functions like phagocytosis and cytotoxicity. Supplementation can restore immune health, but excessive zinc can also harm immune responses.
Area of Science:
- Immunology
- Cell Biology
- Nutritional Science
Background:
- Zinc is an essential trace element vital for rapidly dividing cells, particularly immune cells.
- Immune cell function is highly sensitive to zinc concentration, with both deficiency and excess impacting responses.
Purpose of the Study:
- To provide an overview of the concentration-dependent effects of zinc on various immune cells.
- To highlight the critical role of adequate zinc levels for maintaining immune homeostasis.
Main Methods:
- Review of in vivo and in vitro studies examining zinc's impact on monocytes, natural killer cells, neutrophils, T cells, and B cells.
- Analysis of cytokine release (interleukins, tumor necrosis factor-alpha, interferon-gamma) following zinc exposure.
Main Results:
- Zinc deficiency impairs monocyte function, natural killer cell cytotoxicity, neutrophil phagocytosis, and T cell function, while increasing autoreactivity.
- Zinc deficiency also induces apoptosis in B cells.
- In vitro studies show that specific zinc concentrations can activate or suppress different immune cell types and induce cytokine release.
Conclusions:
- Immune cell function is critically dependent on zinc concentration.
- Both zinc deficiency and high zinc dosages can negatively affect immune responses.
- Tailored zinc supplementation is necessary to restore immune function without causing adverse effects.
Abstract:
Zinc is known to be essential for all highly proliferating cells in the human body, especially the immune system. A variety of in vivo and in vitro effects of zinc on immune cells mainly depend on the zinc concentration. All kinds of immune cells show decreased function after zinc depletion. In monocytes, all functions are impaired, whereas in natural killer cells, cytotoxicity is decreased, and in neutrophil granulocytes, phagocytosis is reduced. The normal functions of T cells are impaired, but autoreactivity and alloreactivity are increased. B cells undergo apoptosis. Impaired immune functions due to zinc deficiency are shown to be reversed by an adequate zinc supplementation, which must be adapted to the actual requirements of the patient. High dosages of zinc evoke negative effects on immune cells and show alterations that are similar to those observed with zinc deficiency. Furthermore, when peripheral blood mononuclear cells are incubated with zinc in vitro, the release of cytokines such as interleukins (IL)-1 and -6, tumor necrosis factor-alpha, soluble IL-2R and interferon-gamma is induced. In a concentration of 100 micro mol/L, zinc suppresses natural killer cell killing and T-cell functions whereas monocytes are activated directly, and in a concentration of 500 micro mol/L, zinc evokes a direct chemotactic activation of neutrophil granulocytes. All of these effects are discussed in this short overview.
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