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新型珠基表位分析是一种用于分析食物过敏中表位特异性抗体库的敏感可靠的工具。

Novel Bead-Based Epitope Assay is a sensitive and reliable tool for profiling epitope-specific antibody repertoire in food allergy.

机构信息

Department of Pediatrics, Allergy and Immunology, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

Department of Population Health Science and Policy, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

出版信息

Sci Rep. 2019 Dec 5;9(1):18425. doi: 10.1038/s41598-019-54868-7.

Abstract

Identification of allergenic IgE epitopes is instrumental for the development of novel diagnostic and prognostic methods in food allergy. In this work, we present the quantification and validation of a Bead-Based Epitope Assay (BBEA) that through multiplexing of epitopes and multiple sample processing enables completion of large experiments in a short period of time, using minimal quantities of patients' blood. Peptides that are uniquely coupled to beads are incubated with serum or plasma samples, and after a secondary fluorophore-labeled antibody is added, the level of fluorescence is quantified with a Luminex reader. The signal is then normalized and converted to epitope-specific antibody binding values. We show that the effect of technical artifacts, i.e. well position or reading order, is minimal; and batch effects - different individual microplate runs - can be easily estimated and eliminated from the data. Epitope-specific antibody binding quantified with BBEA is highly reliable, reproducible and has greater sensitivity of epitope detection compared to peptide microarrays. IgE directed at allergenic epitopes is a sensitive biomarker of food allergy and can be used to predict allergy severity and phenotypes; and quantification of the relationship between epitope-specific IgE and IgG4 can further improve our understanding of the immune mechanisms behind allergic sensitization.

摘要

鉴定变应原 IgE 表位对于开发食物过敏的新型诊断和预后方法至关重要。在这项工作中,我们提出了一种基于珠的表位分析(BBEA)的定量和验证方法,该方法通过表位的多重化和多个样本处理,使用最少的患者血液,在短时间内完成大量实验。唯一偶联到珠上的肽与血清或血浆样本孵育,然后加入二级荧光标记的抗体,用 Luminex 读取器定量荧光强度。然后将信号归一化并转换为表位特异性抗体结合值。我们表明,技术伪影的影响(即孔位或读取顺序)最小;并且批处理效应(不同的单个微孔板运行)可以很容易地从数据中估计和消除。与肽微阵列相比,BBEA 定量的变应原特异性抗体结合具有更高的可靠性、重现性和变应原检测灵敏度。针对变应原表位的 IgE 是食物过敏的敏感生物标志物,可用于预测过敏严重程度和表型;并且定量分析表位特异性 IgE 与 IgG4 之间的关系可以进一步加深我们对过敏致敏背后免疫机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f236/6895130/9100d612e666/41598_2019_54868_Fig1_HTML.jpg

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