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Updated: Jul 9, 2026

Murine Model of Epicutaneously-Induced Immunomodulation
Published on: June 24, 2025
AMPK-driven immunometabolic reprogramming enhances CD19+CD21hiCD24hi regulatory B-cell-mediated suppression of atopic
Seung Taek Lee1, Ha Eun Kim1, So-Yeon Kim2
1Department of Immunology, Jeonbuk National University Medical School, Jeonju, Korea.
Background:
Atopic dermatitis (AD) is characterized by dysregulated immune responses and persistent inflammation. Regulatory B (Breg) cells suppress inflammation, but the metabolic mechanisms constraining their function in AD remain unclear.
Objective:
We sought to define whether immunometabolic regulation governs Breg cell differentiation and function in AD.
Methods:
Mouse and human B cells were stimulated with the adenosine monophosphate-activated protein kinase (AMPK) activator 5-aminoimidazole-4-carboxamide ribonucleotide (AICAR) under inflammatory conditions, with genetic and pharmacologic perturbations. Functional and mechanistic analyses were performed with coculture systems, a 2,4-dinitrochlorobenzene and Dermatophagoides farinae extract-induced murine model of AD, adoptive transfer approaches, adoptive transfer, and human peripheral blood mononuclear cells from patients with AD.
Results:
AICAR treatment or adoptive transfer of AICAR-induced Breg cells significantly attenuated AD-like inflammation, whereas AMPK inhibition or IL-10 blockade abrogated these effects. Mechanistically, AICAR induced IL-10-producing Breg cells through AMPK-dependent suppression of mTOR signaling and mitochondrial reactive oxygen species while preserving oxidative phosphorylation. This reprogramming selectively enhanced regulatory B-cell function and suppressed STAT1 signaling without affecting STAT3. Functionally, these Breg cells suppressed TH1, TH2, and TH17 responses in an IL-10-dependent manner without expanding Foxp3+ regulatory T cells. In human peripheral blood mononuclear cells from patients with AD, AICAR restored immunometabolic coupling by increasing IL-10-producing B cells and reducing proinflammatory cytokine production.
Conclusion:
These findings identify an AMPK-mTOR-redox metabolic checkpoint that governs regulatory B-cell function and restrains AD inflammation, linking metabolic control to immune regulation.
