Olivry Thierry, Fontao Ana Mas, Aumayr Martina, Ivanovova Natalia Paulenka, Mitterer Georg, Harwanegg Christian
Nextmune AB, Riddargatan 19, SE-114-56 Stockholm, Sweden.
Nextmune Spain, Valentin Beato 24, 28037 Madrid, Spain.
Vet Sci. 2024 Oct 7;11(10):482. doi: 10.3390/vetsci11100482.
Detecting IgE sensitizations in the serum of allergic dogs is commonly performed using allergen extracts, but these are difficult to standardize. This article details the development and validation of the Pet Allergy Xplorer (PAX; Nextmune, Stockholm, Sweden), the first multiplex macroarray for the detection of IgE sensitization in dogs using allergen extracts and molecular components; the PAX is derived from the Allergy Xplorer (ALEX; MacroArray Diagnostics, Vienna, Austria). The selection of allergens, cartridge processing, strategy for identifying and blocking IgE directed against cross-reactive carbohydrate determinants (CCDs), and the method used for determining the positivity threshold are described. The validation of the PAX included evaluations of the specificity of its anti-IgE monoclonal antibody, specificity of IgE binding to target allergens, assay precision, and internal consistency. Additionally, the influence of possible confounding factors, such as sample type, the influence of hemolysis, lipemia, bilirubinemia, and elevated CCD-IgE, was tested. Finally, the sensitization rates of 23,858 European dogs to 145 environmental and venom allergens were summarized. The PAX is accurate and reproducible and has a unique CCD-detection and blocking strategy; its molecular allergens offer a unique window on allergen cross-reactivity.
在过敏性犬只的血清中检测IgE致敏通常使用变应原提取物来进行,但这些提取物难以标准化。本文详细介绍了宠物过敏探索者(PAX;Nextmune,瑞典斯德哥尔摩)的开发与验证过程,PAX是首个使用变应原提取物和分子成分检测犬只IgE致敏的多重宏阵列;PAX源自过敏探索者(ALEX;MacroArray Diagnostics,奥地利维也纳)。文中描述了变应原的选择、芯片处理、识别和阻断针对交叉反应性碳水化合物决定簇(CCD)的IgE的策略,以及用于确定阳性阈值的方法。PAX的验证包括评估其抗IgE单克隆抗体的特异性、IgE与目标变应原结合的特异性、检测精度和内部一致性。此外,还测试了可能的混杂因素的影响,如样本类型、溶血、脂血、胆红素血症和升高的CCD-IgE的影响。最后,总结了23858只欧洲犬对145种环境和毒液变应原的致敏率。PAX准确且可重复,具有独特的CCD检测和阻断策略;其分子变应原为变应原交叉反应性提供了独特的视角。