Allergen‐specific B cell responses in oral immunotherapy‐induced desensitization, remission, and natural outgrowth in cow's milk allergy

Author:

Satitsuksanoa Pattraporn1ORCID,van de Veen Willem1ORCID,Tan Ge12ORCID,Lopez Juan‐Felipe1ORCID,Wirz Oliver13ORCID,Jansen Kirstin1ORCID,Sokolowska Milena14ORCID,Mirer David1,Globinska Anna1ORCID,Boonpiyathad Tadech1ORCID,Schneider Stephan R.1ORCID,Barletta Elena15ORCID,Spits Hergen6ORCID,Chang Iris7ORCID,Babayev Huseyn1ORCID,Tahralı İlhan8ORCID,Deniz Gunnur8ORCID,Yücel Esra Özek910ORCID,Kıykım Ayca10ORCID,Boyd Scott D.3ORCID,Akdis Cezmi A.14ORCID,Nadeau Kari7ORCID,Akdis Mübeccel1ORCID

Affiliation:

1. Swiss Institute of Allergy and Asthma Research (SIAF), University of Zürich Davos Switzerland

2. Functional Genomics Center Zürich, ETH Zürich Zürich Switzerland

3. Department of Pathology Stanford University Stanford California USA

4. Christine Kühne–Center for Allergy Research and Education (CK‐CARE) Davos Switzerland

5. Swiss Institute of Bioinformatics Laussane Switzerland

6. Department of Experimental Immunology Academic Medical Center of the University of Amsterdam Amsterdam the Netherlands

7. Sean N. Parker Center for Allergy and Asthma Research Stanford California USA

8. Department of Immunology Aziz Sancar Institute of Experimental Medicine, Istanbul University Istanbul Turkey

9. Division of Pediatrics, Department of Pediatric Allergy and Immunology, Istanbul Faculty of Medicine Istanbul University Istanbul Turkey

10. Department of Pediatric Allergy and Immunology, Cerrahpasa Medical Faculty Istanbul University‐Cerrahpasa Istanbul Turkey

Abstract

AbstractBackgroundAntigen‐specific memory B cells play a key role in the induction of desensitization and remission to food allergens in oral immunotherapy and in the development of natural tolerance (NT). Here, we characterized milk allergen Bos d 9‐specific B cells in oral allergen‐specific immunotherapy (OIT) and in children spontaneously outgrowing cow's milk allergy (CMA) due to NT.MethodsSamples from children with CMA who received oral OIT (before, during, and after), children who naturally outgrew CMA (NT), and healthy individuals were received from Stanford biobank. Bos d 9‐specific B cells were isolated by flow cytometry and RNA‐sequencing was performed. Protein profile of Bos d 9‐specific B cells was analyzed by proximity extension assay.ResultsIncreased frequencies of circulating milk allergen Bos d 9‐specific B cells were observed after OIT and NT. Milk‐desensitized subjects showed the partial acquisition of phenotypic features of remission, suggesting that desensitization is an earlier stage of remission. Within these most significantly expressed genes, IL10RA and TGFB3 were highly expressed in desensitized OIT patients. In both the remission and desensitized groups, B cell activation‐, Breg cells‐, BCR‐signaling‐, and differentiation‐related genes were upregulated. In NT, pathways associated with innate immunity characteristics, development of marginal zone B cells, and a more established suppressor function of B cells prevail that may play a role in long‐term tolerance. The analyses of immunoglobulin heavy chain genes in specific B cells demonstrated that IgG2 in desensitization, IgG1, IgA1, IgA2, IgG4, and IgD in remission, and IgD in NT were predominating. Secreted proteins from allergen‐specific B cells revealed higher levels of regulatory cytokines, IL‐10, and TGF‐β after OIT and NT.ConclusionAllergen‐specific B cells are essential elements in regulating food allergy towards remission in OIT‐received and naturally resolved individuals.

Publisher

Wiley

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