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Facing Hymenoptera Venom Allergy: From Natural To Recombinant Allergens.

机译:面对膜翅目毒液过敏:从天然到重组过敏原。

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摘要

Along with food and drug allergic reactions, a Hymenoptera insect Sting (Apoidea, Vespidae, Formicidae) is one of the most common causes of anaphylaxis worldwide. Diagnoses of Hymenoptera venom allergy (HVA) and specific immunotherapy (SIT) have been based on the use of crude venom extracts. However, the incidence of cross-reactivity and low levels of sensibility during diagnosis, as well as the occurrence of nonspecific sensitization and undesired side effects during SIT, encourage the search for novel allergenic materials. Recombinant allergens are an interesting approach to improve allergy diagnosis and SIT because they circumvent major problems associated with the use of crude venom. Production of recombinant allergens depends on the profound molecular characterization of the natural counterpart by combining some omics approaches with high-throughput screening techniques and the selection of an appropriate system for heterologous expression. To date, several clinically relevant allergens and novel venom toxins have been identified, cloned and characterized, enabling a better understanding of the whole allergenic and envenoming processes. Here, we review recent findings on identification, molecular characterization and recombinant expression of Hymenoptera venom allergens and on the evaluation of these heterologous proteins as valuable tools for tackling remaining pitfalls on HVA diagnosis and immunotherapy.
机译:除食物和药物过敏反应外,膜翅目昆虫St(Apoidea,Vespidae,Formicidae)是全世界过敏反应的最常见原因之一。膜翅目毒液过敏(HVA)和特异性免疫疗法(SIT)的诊断已基于使用粗制毒液提取物。然而,在诊断过程中交叉反应的发生和低水平的敏感性,以及在SIT期间发生非特异性致敏和不良副作用,促使人们寻找新的致敏材料。重组变应原是一种改进变态反应诊断和SIT的有趣方法,因为它们规避了与使用粗毒液有关的主要问题。重组变应原的产生取决于自然组学的深刻分子特征,该特征是通过将一些组学方法与高通量筛选技术结合以及选择合适的异源表达系统来组合而成的。迄今为止,已经鉴定,克隆和表征了几种临床相关的过敏原和新型毒毒素,使人们能够更好地了解整个过敏原和毒蛇毒的过程。在这里,我们回顾了有关膜翅目毒液变应原的鉴定,分子表征和重组表达的最新发现,以及对这些异源蛋白质的评估,作为解决HVA诊断和免疫疗法中存在的缺陷的有价值的工具。

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