Modification of the fluorescent allergosorbent test as an inhibition assay for determination of cross-reactivity among aeroallergens

The fluorescent allergosorbent test was adapted as an inhibition assay to determine cross-reactivity between aeroallergens. With this method, similar antigenic determinants were found between short ragweed and giant ragweed, cocklebur, lamb's-quarter, rough pigweed, marsh elder, and goldenrod....

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Veröffentlicht in:Journal of allergy and clinical immunology 1991, Vol.87 (1), p.98-103
Hauptverfasser: Perrick, David, Stafford, Chester T., Armstrong, Elisa, DuRant, Robert H.
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container_end_page 103
container_issue 1
container_start_page 98
container_title Journal of allergy and clinical immunology
container_volume 87
creator Perrick, David
Stafford, Chester T.
Armstrong, Elisa
DuRant, Robert H.
description The fluorescent allergosorbent test was adapted as an inhibition assay to determine cross-reactivity between aeroallergens. With this method, similar antigenic determinants were found between short ragweed and giant ragweed, cocklebur, lamb's-quarter, rough pigweed, marsh elder, and goldenrod. Cocklebur and giant ragweed were highly potent in their ability to competitively bind to short ragweed IgE. The other pollens demonstrated lower potency of cross-reacting antigens. The fluorescent allergosorbent test—inhibition assay appears to be a useful method to determine cross-reactivity among aeroallergens.
doi_str_mv 10.1016/0091-6749(91)90218-D
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source MEDLINE; Elsevier ScienceDirect Journals Complete; EZB-FREE-00999 freely available EZB journals
subjects Allergological tests
Binding, Competitive
Biological and medical sciences
Cross Reactions
Epitopes - immunology
Fluorescent Antibody Technique
Humans
Immunoglobulin E - metabolism
Immunological methods for diagnosis and exploration
Immunopathology
Immunosorbent Techniques
Medical sciences
Pollen - immunology
Rhinitis, Allergic, Seasonal - diagnosis
title Modification of the fluorescent allergosorbent test as an inhibition assay for determination of cross-reactivity among aeroallergens
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