Mapping Allergen B‐ and T‐Cell Epitopes: Technological Advances and Their Role in Precision Allergy Therapy

过敏原 精密医学 免疫学 计算生物学 医学 免疫系统 表位 过敏 生物信息学 人类白细胞抗原 生物信息学 免疫疗法 免疫识别 仿形(计算机编程) 获得性免疫系统
作者
Mark Møiniche,Josefine Corneliussen,Kristoffer H. Johansen,Alexandre Ruiz‐Carrasco,Caroline Paulsen,Y Li,Carolina Barra,Sandhya Bangaru,Monica L. Fernández-Quintero,Ewa Bartko,Lars Blom,Esperanza Rivera‐de‐Torre
出处
期刊:Allergy [Wiley]
标识
DOI:10.1111/all.70396
摘要

Allergic diseases arise from aberrant immune recognition of otherwise harmless environmental proteins and are driven by epitope-specific interactions between allergens and the adaptive immune system. Although component-resolved diagnostics have improved molecular characterisation of sensitization, they remain limited to whole-allergen resolution and do not capture the fine specificity and heterogeneity of immune recognition that ultimately determine clinical reactivity, cross-reactivity, and treatment outcomes. Increasing evidence indicates that allergic sensitization, severity, and tolerance are governed by discrete B- and T-cell epitopes rather than entire allergen molecules. This review provides a comprehensive overview of established and emerging technologies for allergen epitope mapping at molecular resolution. For B-cell epitopes, we discuss peptide-based screening approaches, display technologies, deep mutational scanning, structural and biophysical methods, and advances in in silico prediction. For T-cell epitopes, we summarise experimental and computational strategies to identify allergen-derived peptides presented by HLA molecules and recognised by T-cell receptors, highlighting the influence of HLA diversity on individualised immune responses. Finally, we explore the clinical and translational implications of epitope-resolved allergen profiling for next-generation diagnostics, functional cell-based assays, improved risk stratification, cross-reactivity prediction, and the rational design of safer and more precise immunotherapies. Together, these approaches support the development of precision medicine strategies in allergic disease.
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