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七种与过敏相关的膜翅目昆虫重组抗原 5 过敏原在诊断中的应用。

Application of recombinant antigen 5 allergens from seven allergy-relevant Hymenoptera species in diagnostics.

机构信息

Center of Allergy and Environment (ZAUM), Technical University of Munich and Helmholtz Center Munich, Munich, Germany.

Department of Dermatology and Allergy Biederstein, Technical University of Munich, Munich, Germany.

出版信息

Allergy. 2017 Jan;72(1):98-108. doi: 10.1111/all.13000. Epub 2016 Aug 26.

Abstract

BACKGROUND

Hymenoptera stings can cause severe anaphylaxis in untreated venom-allergic patients. A correct diagnosis regarding the relevant species for immunotherapy is often hampered by clinically irrelevant cross-reactivity. In vespid venom allergy, cross-reactivity between venoms of different species can be a diagnostic challenge. To address immunological IgE cross-reactivity on molecular level, seven recombinant antigens 5 of the most important Vespoidea groups were assessed by different diagnostic setups.

METHODS

The antigens 5 of yellow jackets, hornets, European and American paper wasps, fire ants, white-faced hornets, and Polybia wasps were recombinantly produced in insect cells, immunologically and structurally characterized, and their sIgE reactivity assessed by ImmunoCAP, ELISA, cross-inhibition, and basophil activation test (BAT) in patients with yellow jacket or Polistes venom allergy of two European geographical areas.

RESULTS

All recombinant allergens were correctly folded and structural models and patient reactivity profiles suggested the presence of conserved and unique B-cell epitopes. All antigens 5 showed extensive cross-reactivity in sIgE analyses, inhibition assays, and BAT. This cross-reactivity was more pronounced in ImmunoCAP measurements with venom extracts than in sIgE analyses with recombinant antigens 5. Dose-response curves with the allergens in BAT allowed a differentiated individual dissection of relevant sensitization.

CONCLUSIONS

Due to extensive cross-reactivity in various diagnostic settings, antigens 5 are inappropriate markers for differential sIgE diagnostics in vespid venom allergy. However, the newly available antigens 5 from further vespid species and the combination of recombinant allergen-based sIgE measurements with BAT represents a practicable way to diagnose clinically relevant sensitization in vespid venom allergy.

摘要

背景

膜翅目昆虫螫伤可导致未经治疗的毒液过敏患者发生严重过敏反应。对于免疫治疗相关的特定物种,正确的诊断通常会受到临床无关的交叉反应的阻碍。在胡蜂毒液过敏中,不同物种毒液之间的交叉反应可能是一个诊断挑战。为了在分子水平上评估免疫 IgE 交叉反应,使用七种重组抗原 5 评估了最重要的 Vespoidea 组的不同诊断方案。

方法

在昆虫细胞中重组产生了黄胡蜂、大黄蜂、欧洲和美洲纸蜂、火蚁、白脸胡蜂和 Polybia 胡蜂的抗原 5,对其进行了免疫和结构特征分析,并通过 ImmunoCAP、ELISA、交叉抑制和嗜碱性粒细胞激活试验(BAT)评估了其在来自两个欧洲地理区域的黄胡蜂或 Polistes 毒液过敏患者中的 sIgE 反应性。

结果

所有重组变应原均正确折叠,结构模型和患者反应性图谱表明存在保守和独特的 B 细胞表位。所有抗原 5 在 sIgE 分析、抑制测定和 BAT 中均显示出广泛的交叉反应性。与重组抗原 5 的 sIgE 分析相比,在 ImmunoCAP 测量中,这种交叉反应更为明显。在 BAT 中使用过敏原进行剂量反应曲线可对相关致敏进行差异化个体剖析。

结论

由于在各种诊断方案中存在广泛的交叉反应性,抗原 5 不适合作为胡蜂毒液过敏中差异化 sIgE 诊断的标志物。然而,新获得的来自其他胡蜂物种的抗原 5 以及基于重组变应原的 sIgE 测量与 BAT 的结合,代表了诊断胡蜂毒液过敏中临床相关致敏的一种可行方法。

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