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May 9, 2026Allergy0 citationsOpen Access

MAIT Cells Suppress IgE ‐Mediated Asthma via IFNγ ‐Dependent B Cell Regulation

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ACAngela M. CannataJMJaclyn W. McAleesJHJulie Hargis

Key Points

  • This research aims to clarify the role of MAIT cells in the pathogenesis of allergic asthma.
  • Utilized a murine model of house dust mite-induced asthma to evaluate MAIT cell function.
  • Inhibited MAIT cell activation using Acetyl-6-formylpterin (A6FP) to assess effects on asthma symptoms.
  • Conducted in vitro co-culture experiments to analyze MAIT cells' impact on B cell IgE production.
  • Pharmacologic inhibition of MAIT cells worsened airway hyperresponsiveness and increased serum IgE levels.
  • MAIT cell antagonism did not amplify airway hyperresponsiveness in IgE-deficient mice, indicating a direct link to IgE.
  • In vitro, MAIT cells suppressed B cell IgE production in an IFNγ-dependent manner.

Abstract

BACKGROUND: Mucosal-associated invariant T (MAIT) cells are innate-like lymphocytes enriched in mucosal tissues, but their role in allergic asthma pathogenesis remains poorly defined. In this study, we sought to elucidate the role of MAIT cells in a T cell-dominant model of allergic asthma. METHODS: We used a murine model of house dust mite-induced asthma and a selective MAIT cell antagonist (Acetyl-6-formylpterin, A6FP) to inhibit MAIT cell activation in vivo. Airway hyperresponsiveness, lung inflammation, serum IgE, and cytokine profiles were assessed. In vitro co-culture experiments evaluated the direct impact of MAIT cells on B cell IgE production. RESULTS: Pharmacologic inhibition of MAIT cells exacerbated airway hyperresponsiveness and elevated circulating IgE without altering airway eosinophilia or T helper type 2/type 17 cytokine production. MAIT cell antagonism failed to increase AHR in IgE-deficient mice. In vitro, activated MAIT cells directly suppressed B cell IgE production through IFNγ signaling. IL-4 was sufficient to enhance IFNγ production by MAIT cells, suggesting that allergic inflammation may induce a counter-regulatory response from MAIT cells to limit IgE-mediated pathology. CONCLUSION: MAIT cells limit airway hyperresponsiveness by suppressing IgE production through IFNγ-dependent B cell regulation. These findings define a previously unrecognized immunoregulatory function of MAIT cells in allergic asthma and suggest that enhancing MAIT cell activity may represent a therapeutic strategy for IgE-mediated diseases.

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Cite This Study

Cannata et al. (2026) studied this question.

synapsesocial.com/papers/69fecf71b9154b0b828766d9https://doi.org/10.1111/all.70384
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