Department of Allergy and Clinical Immunology, Clinica Universidad de Navarra, Pamplona, Spain.
J Investig Allergol Clin Immunol. 2012;22(7):508-13.
Peanut allergy is an increasingly serious disorder with a heterogeneous pattern of sensitization across different countries. In vitro diagnostic techniques may help in establishing these patterns.
To analyze the usefulness of determining specific immunoglobulin E (sIgE) with the ImmunoCAP fluorescence enzyme immunoassay (FEIA), the ImmunoCAP ISAC CRD103 microarray (ISAC), and the basophil activation test (BAT) in the molecular diagnosis of peanut allergy.
In 26 peanut-allergic patients, sIgE antibodies against allergic components were measured with FEIA, ISAC, and BAT.
The major peanut component in our population wasAra h 9.The detection of sIgE toAra h 9 using FEIA and BAT with this allergen yielded a sensitivity of 92% and 88% and a specificity of 95% and 100%, respectively. Overall diagnosis of peanut allergy by ISAC showed a sensitivity of 11% but a specificity of 95% since Ara h 9 was not present in the microarray version used. There was diagnostic agreement between the 3 techniques for the peanut allergens studied.
The determination of sIgE to Ara h 9 using FEIA and BAT offers high sensitivity and specificity in the diagnosis of peanut allergy in the Spanish population. The CRD103 version of ISAC is not of value in our region as it does not include the most common allergen, Ara h 9.
花生过敏是一种日益严重的疾病,在不同国家具有不同的致敏模式。体外诊断技术可能有助于确定这些模式。
分析使用 ImmunoCAP 荧光酶免疫分析法(FEIA)、ImmunoCAP ISAC CRD103 微阵列(ISAC)和嗜碱性粒细胞激活试验(BAT)测定特异性免疫球蛋白 E(sIgE)在花生过敏的分子诊断中的作用。
在 26 例花生过敏患者中,使用 FEIA、ISAC 和 BAT 测定针对过敏成分的 sIgE 抗体。
我们人群中的主要花生成分是 Ara h 9。使用 FEIA 和 BAT 检测 Ara h 9 的 sIgE,其灵敏度分别为 92%和 88%,特异性分别为 95%和 100%。ISAC 对花生过敏的总体诊断显示出 11%的灵敏度,但特异性为 95%,因为所用微阵列版本中不存在 Ara h 9。研究的 3 种技术对花生过敏原的诊断具有一致性。
FEIA 和 BAT 测定 Ara h 9 的 sIgE 可提供西班牙人群中花生过敏的高灵敏度和特异性。在我们的地区,CRD103 版本的 ISAC 没有价值,因为它不包括最常见的过敏原 Ara h 9。