Correlated dynamics of serum IGE and IGE+ clonotype count with allergen air level in seasonal allergic rhinitis

A. I. Mikelov, D. B. Staroverov, E. A. Komech, Y. B. Lebedev, D. M. Chudakov, I. V. Zvyagin

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Mechanisms of maintenance of immunological memory in the chronic course of seasonal allergic rhinitis remain poorly understood. The detailed understanding of these mechanisms is required for design of new approaches for allergy treatment. It is known that the level of allergen-specific IgE antibodies (sIgE), which play a key role in the development of the disease, is increased in patients with seasonal allergic rhinitis during pollination season. This study aimed to investigate the dynamics of serum IgE levels and characteristics of the clonal repertoire of IgE-secreting lymphocytes depending on the intensity of the patient's contact with the allergen. For three patients, allergic to birch pollen (22, 22, and 28 y.o.), we measured total IgE and birch pollen specific IgE levels at 6 time points with 2 week interval during the birch pollination season. Immunoglobulin heavy chain gene (IGH) clonal repertoire data for several B-cell subpopulations at different time points were obtained for one patient. We observe growth of the sIgE level (91%, 37%, and 64% compared to the baseline) at the peak of pollination season in all three donors. Initial increase in sIgE and total IgE levels coincides with the birch pollination initiation; sIgE and total IgE levels correlate with the birch pollen air level (sIgE: R2 = 0.98 at p < 0.05; total IgE: R2 = 0.95 at p < 0.05). We detected IgE clonotypes only in samples obtained during the birch pollination, which indicates an increase of IGE-expressing cells concentration during this period. The frequency of IgE clonotypes was extremely low compared to that of the clonotypes of other isotypes (IgE - 0.01%, IgM - 48.4%, IgD - 14%, IgG - 17.4%, IgA - 19.8%). Hypermutation and phylogenetic analysis of the sequences from the 13 detected IgE-containing clonal groups showed that these IgE clonotypes could originate from IgG as a result of sequential isotype-switching.

    Original languageEnglish
    Pages (from-to)13-22
    Number of pages10
    JournalBulletin of Russian State Medical University
    Volume9
    Issue number5
    DOIs
    Publication statusPublished - 2019

    Keywords

    • Allergen-specific IgE
    • Allergic rhinitis
    • Birch pollen
    • Immunoglobulin clonal repertoire
    • Seasonal dynamics

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