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Zinc/copper imbalance reflects immune dysfunction in human leishmaniasis: an ex vivo and in vitro study
Johan Van Weyenbergh1, Gisélia Santana, Argemiro D'Oliveira
1LIMI, Gonçalo Moniz Research Center -Oswaldo Cruz Foundation (FIOCRUZ), Rua Waldemar Falcao 121, 40295-001 Salvador-BA, Brazil. johan@cpqgm.fiocruz.br
Insights
Zinc deficiency is linked to severe leishmaniasis forms, suggesting zinc supplementation may help. Elevated copper levels correlate with a stronger antibody response but may impair cellular immunity by reducing IFN-gamma production.
Area of Science:
- Immunology
- Nutritional Science
- Parasitology
Background:
- Intracellular pathogen clearance, like Leishmania, relies on Th1 immunity; Th2 dominance exacerbates disease.
- Experimental zinc deficiency impairs Th1 responses, highlighting its role in immune regulation.
- Investigating trace metal involvement in leishmaniasis immune responses is crucial for understanding disease pathogenesis.
Purpose of the Study:
- To determine if zinc and copper levels differ across clinical forms of leishmaniasis.
- To explore the potential role of these trace metals in modulating the immune response to Leishmania parasites.
Main Methods:
- Quantified plasma zinc (Zn) and copper (Cu) levels using atomic absorption spectrophotometry.
- Assessed anti-Leishmania humoral immunity via specific plasma IgG.
- Evaluated cellular immunity through lymphoproliferation and cytokine production (IFN-gamma).
Main Results:
- All leishmaniasis patient groups showed significantly decreased plasma Zn levels compared to controls.
- Visceral (VL) and mucosal (ML) leishmaniasis patients exhibited overt zinc deficiency.
- Elevated plasma Cu correlated with increased anti-Leishmania IgG and decreased parasite-induced IFN-gamma production, particularly in LCL patients.
Conclusions:
- Zinc deficiency in VL and ML suggests potential therapeutic benefits of zinc supplementation.
- Increased copper levels correlate with enhanced humoral immunity but may suppress cellular immunity by inhibiting IFN-gamma.
- Elevated copper may increase susceptibility to intracellular pathogens by impairing cell-mediated defense mechanisms.
Background:
The process of elimination of intracellular pathogens, such as Leishmania, requires a Th1 type immune response, whereas a dominant Th2 response leads to exacerbated disease. Experimental human zinc deficiency decreases Th1 but not Th2 immune response. We investigated if zinc and copper levels differ in different clinical forms of leishmaniasis, and if these trace metals might be involved in the immune response towards the parasite.
Methods:
Blood was collected from 31 patients with either localized cutaneous (LCL), mucosal (ML) or visceral (VL) leishmaniasis, as well as from 25 controls from endemic and non-endemic areas. Anti-Leishmania humoral and cellular immune response were evaluated by quantifying specific plasma IgG, lymphoproliferation and cytokine production, respectively. Plasma levels of Cu and Zn were quantified by atomic absorption spectrophotometry.
Results:
A significant decrease in plasma Zn was observed in all three patient groups (p < 0.01 for LCL and ML, p < 0.001 for VL), as compared to controls, but only VL (7/10) and ML (1/7) patients displayed overt Zn deficiency. Plasma Cu was increased in LCL and VL (p < 0.001) but not in ML, and was strongly correlated to anti-Leishmania IgG (Spearman r = 0.65, p = 0.0028). Cu/Zn ratios were highest in patients with deficient cellular (VL<
Conclusions:
1. Zn deficiency in VL and ML indicate possible therapeutic administration of Zn in these severe forms of leishmaniasis. 2. Plasma Cu positively correlates to humoral immune response across patient groups. 3. Environmentally or genetically determined increases in Cu levels might augment susceptibility to infection with intracellular pathogens, by causing a decrease in IFN-gamma production.
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