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虾过敏原的研究进展与免疫学见解

Research progress and immunological insights of shrimp allergens.

作者信息

Xu Bao-Liang, Wang Yuan-Yuan, Chu Xin-Lei, Dong Chun-Ming

机构信息

College of Marine and Environmental Sciences, Tianjin University of Science and Technology, Tianjin, 300457, China.

Department of Epidemiology and Biostatistics, Tianjin Medical University Cancer Institute and Hospital, Tianjin Medical University, Tianjin, 300060, China.

出版信息

Fish Shellfish Immunol. 2025 Jan;156:110051. doi: 10.1016/j.fsi.2024.110051. Epub 2024 Nov 26.

Abstract

Allergic diseases have become a major health issue in the 21st century. The FAO has pinpointed the eight most prevalent allergens worldwide, with shrimp allergy attracting global concern due to its escalating incidence. This review delves into the current knowledge of shrimp allergen types and traits, immune response mechanisms, advancements in cross-reactivity research, and breakthroughs in diagnostic and therapeutic methods. It highlights the variety of shrimp allergens, such as tropomyosin and arginine kinase, and concentrates on IgE-mediated immediate hypersensitivity reactions, involving mast cells and basophils, alongside the role of T cells and cytokines in non-IgE-mediated delayed hypersensitivity reactions. The exploration of cross-reactivity underscores the connection between shrimp allergy and allergies to other animals. Utilizing bioinformatics tools, including homology analysis, epitope prediction, and molecular modeling, has enhanced our comprehension of allergen molecular features. In treatment and diagnosis, innovative approaches like immunotherapy and gene editing technology hold potential to decrease allergic sensitivity, while emerging reduction techniques like heat treatment and enzymatic hydrolysis offer new strategies for the prevention and management of food allergies. The evolution of allergen detection and purification technologies has spurred innovation in testing methodologies, encompassing traditional in vivo tests like SPT and DBPCFC, in addition to a range of other techniques such as immunoassays, biochip technology, PCR, and histamine release experiments, propelling the instantaneous and accurate identification of allergens. These scientific breakthroughs not only expand our understanding of shrimp allergen biology but also lay the foundation for developing more effective allergy prevention and control strategies.

摘要

过敏性疾病已成为21世纪的一个主要健康问题。联合国粮食及农业组织已确定了全球八种最常见的过敏原,其中虾过敏因其发病率不断上升而引起全球关注。这篇综述深入探讨了目前关于虾过敏原类型和特性、免疫反应机制、交叉反应性研究进展以及诊断和治疗方法突破的知识。它强调了虾过敏原的多样性,如原肌球蛋白和精氨酸激酶,并着重于IgE介导的速发型超敏反应,涉及肥大细胞和嗜碱性粒细胞,以及T细胞和细胞因子在非IgE介导的迟发型超敏反应中的作用。对交叉反应性的探索强调了虾过敏与其他动物过敏之间的联系。利用生物信息学工具,包括同源性分析、表位预测和分子建模,增强了我们对过敏原分子特征的理解。在治疗和诊断方面,免疫疗法和基因编辑技术等创新方法有降低过敏敏感性的潜力,而热处理和酶水解等新兴减敏技术为食物过敏的预防和管理提供了新策略。过敏原检测和纯化技术的发展推动了检测方法的创新,包括传统的体内试验如皮肤点刺试验和双盲安慰剂对照食物激发试验,以及一系列其他技术,如免疫测定、生物芯片技术、聚合酶链反应和组胺释放实验,推动了过敏原的即时和准确识别。这些科学突破不仅扩展了我们对虾过敏原生物学的理解,也为制定更有效的过敏预防和控制策略奠定了基础。

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