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防御素作为花粉和食物过敏原的作用。

The Role of Defensins as Pollen and Food Allergens.

机构信息

Department of Biosciences and Medical Biology, Paris Lodron University Salzburg, Hellbrunnerstraße 34, 5020, Salzburg, Austria.

出版信息

Curr Allergy Asthma Rep. 2023 Jun;23(6):277-285. doi: 10.1007/s11882-023-01080-3. Epub 2023 May 13.

Abstract

PURPOSE OF REVIEW

Defensin-polyproline-linked proteins are relevant allergens in Asteraceae pollen. Depending on their prevalence and amount in the pollen source, they are potent allergens, as shown for the major mugwort pollen allergen Art v 1. Only a few allergenic defensins have been identified in plant foods, such as peanut and celery. This review provides an overview of structural and immunological features, IgE cross-reactivity, and diagnostic and therapeutic options regarding allergenic defensins.

RECENT FINDINGS

We present and critically review the allergenic relevance of pollen and food defensins. The recently identified Api g 7 from celeriac and other allergens potentially involved in Artemisia pollen-related food allergies are discussed and related to clinical severity and allergen stability. To specify Artemisia pollen-related food allergies, we propose the term "defensin-related food allergies" to account for defensin-polyproline-linked protein-associated food syndromes. There is increasing evidence that defensins are the causative molecules in several mugwort pollen-associated food allergies. A small number of studies have shown IgE cross-reactivity of Art v 1 with celeriac, horse chestnut, mango, and sunflower seed defensins, while the underlying allergenic molecule remains unknown in other mugwort pollen-associated food allergies. As these food allergies can cause severe allergic reactions, identification of allergenic food defensins and further clinical studies with larger patient cohorts are required. This will allow molecule-based allergy diagnosis and a better understanding of defensin-related food allergies to raise awareness of potentially severe food allergies due to primary sensitization to Artemisia pollen.

摘要

综述目的

防御素-聚脯氨酸连接蛋白是菊科花粉中的相关过敏原。根据其在花粉源中的普遍性和含量,它们是潜在的强过敏原,正如主要艾蒿花粉过敏原 Art v 1 所证明的那样。在植物性食物中,如花生和芹菜中,只鉴定出少数几种过敏防御素。本文综述了植物性食物中防御素的结构和免疫学特征、IgE 交叉反应性、诊断和治疗选择,重点关注花粉和食物防御素。

最新发现

我们提出并批判性地回顾了花粉和食物防御素的过敏相关性。讨论了最近从芹菜中鉴定出的 Api g 7 和其他可能与蒿属花粉相关食物过敏有关的过敏原,并将其与临床严重程度和过敏原稳定性相关联。为了明确与蒿属花粉相关的食物过敏,我们建议使用“防御素相关食物过敏”这一术语,以说明防御素-聚脯氨酸连接蛋白相关的食物综合征。越来越多的证据表明,防御素是几种艾蒿花粉相关食物过敏的致病分子。少数研究表明,Art v 1 与芹菜、欧洲七叶树、芒果和葵花籽防御素有 IgE 交叉反应性,而其他与蒿属花粉相关的食物过敏中潜在的过敏原分子尚不清楚。由于这些食物过敏会引起严重的过敏反应,因此需要鉴定过敏原性食物防御素,并进行更多包含更大患者群体的临床研究。这将允许基于分子的过敏诊断,并更好地了解防御素相关的食物过敏,以提高对由于对蒿属花粉的初次致敏而导致潜在严重食物过敏的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/819b/10281898/b25b03a30649/11882_2023_1080_Fig1_HTML.jpg

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