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Regulatory roles for NKT cell ligands in environmentally induced autoimmunity
Jaya Vas1, Jochen Mattner, Stewart Richardson
1Department of Microbiology and Immunology, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Abstract:
The development of autoimmune diseases is frequently linked to exposure to environmental factors such as chemicals, drugs, or infections. In the experimental model of metal-induced autoimmunity, administration of subtoxic doses of mercury (a common environmental pollutant) to genetically susceptible mice induces an autoimmune syndrome with rapid anti-nucleolar Ab production and immune system activation. Regulatory components of the innate immune system such as NKT cells and TLRs can also modulate the autoimmune process. We examined the interplay among environmental chemicals and NKT cells in the regulation of autoimmunity. Additionally, we studied NKT and TLR ligands in a tolerance model in which preadministration of a low dose of mercury in the steady state renders animals tolerant to metal-induced autoimmunity. We also studied the effect of Sphingomonas capsulata, a bacterial strain that carries both NKT cell and TLR ligands, on metal-induced autoimmunity. Overall, NKT cell activation by synthetic ligands enhanced the manifestations of metal-induced autoimmunity. Exposure to S. capsulata exacerbated autoimmunity elicited by mercury. Although the synthetic NKT cell ligands that we used are reportedly similar in their ability to activate NKT cells, they displayed pronounced differences when coinjected with environmental agents or TLR ligands. Individual NKT ligands differed in their ability to prevent or break tolerance induced by low-dose mercury treatment. Likewise, different NKT ligands either dramatically potentiated or inhibited the ability of TLR9 agonistic oligonucleotides to disrupt tolerance to mercury. Our data suggest that these differences could be mediated by the modification of cytokine profiles and regulatory T cell numbers.
Insights
Environmental factors like mercury can trigger autoimmune diseases. This study shows NKT cell activation and bacterial exposure can worsen mercury-induced autoimmunity, while specific NKT ligands modulate tolerance and immune responses.
Area of Science:
- Immunology
- Environmental Health
Background:
- Autoimmune diseases are linked to environmental factors.
- Mercury exposure can induce autoimmunity in susceptible individuals.
- Innate immune regulators like NKT cells and TLRs influence autoimmune processes.
Purpose of the Study:
- To investigate the interplay between environmental chemicals and NKT cells in regulating autoimmunity.
- To explore the role of NKT and TLR ligands in mercury-induced autoimmunity and tolerance.
- To assess the impact of Sphingomonas capsulata on mercury-induced autoimmunity.
Main Methods:
- Utilized a mouse model of mercury-induced autoimmunity.
- Administered synthetic NKT cell ligands and TLR ligands.
- Investigated the effects of Sphingomonas capsulata exposure.
- Analyzed changes in cytokine profiles and regulatory T cell numbers.
Main Results:
- NKT cell activation by synthetic ligands enhanced mercury-induced autoimmunity.
- Sphingomonas capsulata exposure exacerbated mercury-induced autoimmunity.
- Different NKT ligands exhibited varied effects on tolerance induction and disruption.
- NKT ligands differentially modulated TLR9-mediated tolerance disruption.
Conclusions:
- NKT cell activation and certain environmental exposures can exacerbate metal-induced autoimmunity.
- NKT ligands play a complex role in modulating autoimmune tolerance.
- Cytokine profiles and regulatory T cell numbers may mediate these effects.
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