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Dissecting key contributions of TH2 and TH17 cytokines to atopic dermatitis pathophysiology

Luca D. Meesters, Janou A.Y. Roubroeks, Aranka Gerritsen, Niels Velthuijs, Jaimy A. Klijnhout, Camille Laberthonnière, Ivonne M. van Vlijmen-Willems, Matthias Hübenthal, Diana Rodijk-Olthuis, Rens H.W. Peters, Gijs Rikken, Silke Szymczak, Nanna Fyhrquist, Harri Alenius, Stephan Weidinger, Jos P.H. Smits, Musa Mhlanga, Huiqing Zhou, Hanna Niehues, Ellen H. van den Bogaard*

*Corresponding author for this work

Abstract

Background: In atopic dermatitis (AD), epidermal disease hallmarks are driven by a complex cutaneous inflammatory milieu that varies between patients. How these variable inflammatory signals affect cellular and molecular epidermal AD phenotypes is difficult to study in vivo. Objective: We aimed to unravel which AD-associated cytokines drive specific epidermal disease hallmarks. Methods: We utilized primary and immortalized keratinocyte-derived human epidermal equivalents stimulated with TH2, TH17, and TH22 cytokines. Results: Morphologic, functional, and transcriptomic analyses revealed that TH2 cytokines IL-4 and IL-13 were the main inducers of a proinflammatory and hyperproliferative epidermis. The presence of IL-17A or IL-22 in the TH2 milieu, and especially TH2 + IL-22, most closely resembled AD hallmarks including spongiosis, more severe keratinocyte differentiation defects, and epidermal barrier dysfunction. Single-cell spatial transcriptomics showed expansion of keratinocytes expressing high levels of proliferation genes and downregulation of differentiation genes in the upper epidermal layers. The transcriptomic comparison to in vivo AD lesional skin indicated that the TH2 + IL-22 AD model demonstrated greatest resemblance and identified AD disease marker genes altered by TH2 + IL-22 such as downregulated ACER1 and AKR1C3. Gene expression levels were restored by combinatory exposure to the aryl hydrocarbon receptor ligand tapinarof and the Janus kinase inhibitor tofacitinib. This combined therapeutic approach also completely restored epidermal barrier function and improved morphologic disease hallmarks. Conclusion: Our results reveal the important role of IL-22 in the TH2-driven acute AD pathophysiology and highlight the potential of combinatory medicine in targeted treatment of AD.

Original languageEnglish
JournalJournal of Allergy and Clinical Immunology
Volume156
Issue number3
Pages (from-to)690-704
Number of pages15
ISSN0091-6749
DOIs
Publication statusPublished - 09.2025

Funding

FundersFunder number
EU IMI
European Federation of Pharmaceutical Industries and Associations
Horizon 2020 Framework Programme
Health Holland101098826, PAST4FUTURE, LSHM20043-HSGF
Innovative Medicines Initiative821511
LEO FondetLF-OC-22-001056

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being
    2. SDG 6 - Clean Water and Sanitation
      SDG 6 Clean Water and Sanitation

    Research Areas and Centers

    • Academic Focus: Center for Infection and Inflammation Research (ZIEL)

    DFG Research Classification Scheme

    • 2.21-05 Immunology
    • 2.22-19 Dermatology
    • 2.22-01 Epidemiology, Medical Biometry/Statistics

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