IL-31–dependent neurogenic inflammation restrains cutaneous type 2 immune response in allergic dermatitis

Author:

Fassett Marlys S.123ORCID,Braz Joao M.4ORCID,Castellanos Carlos A.23ORCID,Salvatierra Juan J.4,Sadeghi Mahsa4ORCID,Yu Xiaobing45ORCID,Schroeder Andrew W.3,Caston Jaela12,Munoz-Sandoval Priscila1236ORCID,Roy Suparna123ORCID,Lazarevsky Steven1ORCID,Mar Darryl J.2ORCID,Zhou Connie J.2ORCID,Shin Jeoung-Sook23ORCID,Basbaum Allan I.4ORCID,Ansel K. Mark23ORCID

Affiliation:

1. Department of Dermatology, University of California, San Francisco, CA, USA.

2. Department of Microbiology and Immunology, University of California, San Francisco, CA, USA.

3. Sandler Asthma Basic Research Center (SABRe), San Francisco, CA, USA.

4. Department of Anatomy, University of California, San Francisco, CA, USA.

5. Department of Anesthesiology, University of California, San Francisco, CA, USA.

6. Howard Hughes Medical Institute, San Francisco, CA 94143, USA.

Abstract

Despite robust literature associating IL-31 with pruritic inflammatory skin diseases, its influence on cutaneous inflammation and the interplay between inflammatory and neurosensory pathways remain unmapped. Here, we examined the consequences of disrupting Il31 and its receptor Il31ra in a mouse model of house dust mite (HDM)–induced allergic dermatitis. Il31 -deficient mice displayed a deficit in HDM dermatitis–associated scratching, consistent with its well-established role as a pruritogen. In contrast, Il31 deficiency increased the number and proportion of cutaneous type 2 cytokine–producing CD4 + T cells and serum IgE in response to HDM. Furthermore, Il4ra + monocytes and macrophages capable of fueling a feedforward type 2 inflammatory loop were selectively enriched in Il31ra -deficient HDM dermatitis skin. Thus, IL-31 is not strictly a proinflammatory cytokine but rather an immunoregulatory factor that limits the magnitude of type 2 inflammatory responses in skin. Our data support a model wherein IL-31 activation of IL31RA + pruritoceptors triggers release of calcitonin gene-related protein (CGRP), which can mediate neurogenic inflammation, inhibit CD4 + T cell proliferation, and reduce T cell production of the type 2 cytokine IL-13. Together, these results illustrate a previously unrecognized neuroimmune pathway that constrains type 2 tissue inflammation in the setting of chronic cutaneous allergen exposure and may explain paradoxical dermatitis flares in atopic patients treated with anti-IL31RA therapy.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine,Immunology

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