Smoldovskaya Olga, Feyzkhanova Guzel, Arefieva Alla, Voloshin Sergei, Ivashkina Olga, Reznikov Yuriy, Rubina Alla
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences (EIMB RAS), 119991 Vavilova str.,32, Moscow, Russia.
Allergy Asthma Clin Immunol. 2016 Mar 13;12:9. doi: 10.1186/s13223-016-0117-1. eCollection 2016.
Immunological test systems for diagnostics of type I hypersensitivity involve the following types of antigens: whole allergen extracts, individual highly purified proteins and their recombinant analogues. The goal of this study was to compare the results obtained with whole allergen extracts (birch pollen, cat dander, and timothy grass pollen) and their respective recombinant proteins in biochip-based immunoassay.
Multiplex fluorescent immunoassay of 139 patients' blood serum samples was carried out using biological microchips (biochips). sIgE concentrations for the chosen allergens and their recombinant components were measured. ROC analysis was used for comparison of the results and determination of diagnostic accuracy.
The results for the birch pollen extract and its recombinant allergens have shown that the diagnostic accuracy of the methods utilizing the whole allergen extract, its major component Bet v 1 and the combination of major and minor components (Bet v 1 and Bet v 2) was the same. Values for diagnostic accuracy for the cat dander extract and its major recombinant component Fel d 1 were equal. In contrast with birch pollen and cat dander allergens, using of recombinant components of timothy grass pollen (Phl p 1, Phl p 5, Phl p 7 and Phl p 12) did not allow reaching the diagnostic accuracy of using natural extract.
Multiplex analysis of samples obtained from patients with allergy to birch pollen and cat dander using biological microchips has shown that comparable accuracy was observed for the assay with natural extracts and recombinant allergens. In the case of timothy grass allergen, using the recombinant components may be insufficient.
用于诊断I型超敏反应的免疫检测系统涉及以下几种抗原:全过敏原提取物、单个高度纯化的蛋白质及其重组类似物。本研究的目的是比较在基于生物芯片的免疫测定中,使用全过敏原提取物(桦树花粉、猫皮屑和梯牧草花粉)及其各自的重组蛋白所获得的结果。
使用生物微芯片(生物芯片)对139例患者的血清样本进行多重荧光免疫测定。测量所选过敏原及其重组成分的特异性IgE浓度。采用ROC分析比较结果并确定诊断准确性。
桦树花粉提取物及其重组过敏原的结果表明,使用全过敏原提取物、其主要成分Bet v 1以及主要和次要成分(Bet v 1和Bet v 2)组合的方法,诊断准确性相同。猫皮屑提取物及其主要重组成分Fel d 1的诊断准确性值相等。与桦树花粉和猫皮屑过敏原不同,使用梯牧草花粉的重组成分(Phl p 1、Phl p 5、Phl p 7和Phl p 12)无法达到使用天然提取物的诊断准确性。
使用生物微芯片对桦树花粉和猫皮屑过敏患者的样本进行多重分析表明,天然提取物和重组过敏原检测的准确性相当。对于梯牧草过敏原,使用重组成分可能不够。