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    • Review
      Open Access

      Type 2 Inflammation Contributes to Skin Barrier Dysfunction in Atopic Dermatitis

      JID Innovations
      Vol. 2Issue 5100131Published online: April 25, 2022
      • Lisa A. Beck
      • Michael J. Cork
      • Masayuki Amagai
      • Anna De Benedetto
      • Kenji Kabashima
      • Jennifer D. Hamilton
      • and others
      Cited in Scopus: 0
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      Skin barrier dysfunction, a defining feature of atopic dermatitis (AD), arises from multiple interacting systems. In AD, skin inflammation is caused by host–environment interactions involving keratinocytes as well as tissue-resident immune cells such as type 2 innate lymphoid cells, basophils, mast cells, and T helper type 2 cells, which produce type 2 cytokines, including IL-4, IL-5, IL-13, and IL-31. Type 2 inflammation broadly impacts the expression of genes relevant for barrier function, such as intracellular structural proteins, extracellular lipids, and junctional proteins, and enhances Staphylococcus aureus skin colonization.
      Type 2 Inflammation Contributes to Skin Barrier Dysfunction in Atopic Dermatitis
    • Review
      Open Access

      T-Cell Adhesion in Healthy and Inflamed Skin

      JID Innovations
      Vol. 1Issue 2100014Published online: April 29, 2021
      • Joshua M. Moreau
      • Victoire Gouirand
      • Michael D. Rosenblum
      Cited in Scopus: 0
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        The diverse populations of tissue-resident and transitory T cells present in the skin share a common functional need to enter, traverse, and interact with their environment. These processes are largely dependent on the regulated expression of adhesion molecules, such as selectins and integrins, which mediate bidirectional interactions between immune cells and skin stroma. Dysregulation and engagement of adhesion pathways contribute to ectopic T-cell activity in tissues, leading to the initiation and/or exacerbation of chronic inflammation.
        T-Cell Adhesion in Healthy and Inflamed Skin
      • Original Article
        Open Access

        Dupilumab Effects on Innate Lymphoid Cell and Helper T Cell Populations in Patients with Atopic Dermatitis

        JID Innovations
        Vol. 1Issue 1100003Published online: February 19, 2021
        • Yasutomo Imai
        • Minori Kusakabe
        • Makoto Nagai
        • Koubun Yasuda
        • Kiyofumi Yamanishi
        Cited in Scopus: 0
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          Group 2 innate lymphoid cells (ILCs) are thought to contribute to the pathogenesis of atopic dermatitis (AD). IL-4 stimulates T helper type 2 (Th2) cells and ILC2s to proliferate and produce cytokines. Dupilumab, an antibody against the IL-4 receptor, is used in AD therapy. We speculated that its efficacy might involve blocking the activation of Th2 cells and ILC2s via IL-4. Here, we examined circulating Th2 cells and ILC2s in 27 Japanese patients with AD before and after the administration of dupilumab.
          Dupilumab Effects on Innate Lymphoid Cell and Helper T Cell Populations in Patients with Atopic Dermatitis
        • Review
          Open Access

          Hidradenitis Suppurativa: Host-Microbe and Immune Pathogenesis Underlie Important Future Directions

          JID Innovations
          Vol. 1Issue 1100001Published online: January 11, 2021
          • Simon W. Jiang
          • Melodi Javid Whitley
          • Paula Mariottoni
          • Tarannum Jaleel
          • Amanda S. MacLeod
          Cited in Scopus: 0
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            Hidradenitis suppurativa (HS) is an inflammatory disease of the skin with a chronic, relapsing-remitting course. The pathogenesis of the disease is poorly understood and involves multiple factors, including genetics, environment, host-microbe interactions, and immune dysregulation. In particular, the composition of the cutaneous microbiome shifts as the disease progresses, although it is unclear whether this is a primary or secondary process. Trials with immunomodulatory therapy elucidate the role of specific immune pathways and cytokine signaling in disease mechanism, such as TNF-α, IL-1β, IL-12, IL-17, IL-23, and complement.
            Hidradenitis Suppurativa: Host-Microbe and Immune Pathogenesis Underlie Important Future Directions
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