Feyzkhanova Guzel, Voloshin Sergei, Smoldovskaya Olga, Arefieva Alla, Filippova Marina, Barsky Viktor, Pavlushkina Ludmila, Butvilovskaya Veronika, Tikhonov Alexei, Reznikov Yuri, Rubina Alla
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences (EIMB RAS), Vavilova str., 32, Moscow, Russia 119991.
Clin Proteomics. 2017 Jan 9;14:1. doi: 10.1186/s12014-016-9136-7. eCollection 2017.
sIgE and sIgG4 detection is necessary for more accurate and effective type I hypersensitivity diagnostics and the estimation of disease development. Typically, the analyses of these antibodies are performed separately with the help of various specialized systems. The aim of this study was to develop a microarray-based method for the simultaneous quantitative detection of sIgE and sIgG4 to the most common allergens in a single sample.
A quantitative method for the simultaneous detection of sIgE and sIgG4 was developed based on the technology of hydrogel microchips previously designed at Engelhardt Institute of Molecular Biology, Russian Academy of Sciences (EIMB RAS). The microarray contained gel pads with immobilized allergens and gel pads that allow for the obtaining of sIgE and sIgG4 internal calibration curves for each allergen during the assay. The possibility of the simultaneous detection of sIgE and sIgG4 was developed using the corresponding Cy5 and Cy3 fluorescent dyes.
The multiplex immunoassay method using hydrogel microarrays developed in this study allowed the quantitative detection of sIgE and sIgG4 to 31 allergens from different groups in a single assay. A comparison of the microarray with the existing plate-based analogues (i.e., ALLERG-O-LIQ and sIgG4 ELISA) was performed by analysing 152 blood serum samples and by evaluating Pearson correlation coefficients, ROC analysis, and Passing-Bablok linear regression results.
The implementation of this method in allergy diagnostics will provide the possibility of simultaneously performing primary patient screening and obtaining additional information concerning the severity of the allergies and the choice of an appropriate therapy.
检测特异性IgE(sIgE)和特异性IgG4(sIgG4)对于更准确、有效地进行I型超敏反应诊断以及评估疾病发展情况至关重要。通常,这些抗体的分析是借助各种专业系统分别进行的。本研究的目的是开发一种基于微阵列的方法,用于在单个样本中同时定量检测针对最常见过敏原的sIgE和sIgG4。
基于俄罗斯科学院恩格尔哈特分子生物学研究所(EIMB RAS)先前设计的水凝胶微芯片技术,开发了一种同时检测sIgE和sIgG4的定量方法。该微阵列包含固定有过敏原的凝胶垫以及在检测过程中可为每种过敏原获取sIgE和sIgG4内部校准曲线的凝胶垫。利用相应的Cy5和Cy3荧光染料实现了同时检测sIgE和sIgG4的可能性。
本研究中开发的使用水凝胶微阵列的多重免疫分析方法能够在单次检测中对来自不同组别的31种过敏原的sIgE和sIgG4进行定量检测。通过分析152份血清样本并评估皮尔逊相关系数、ROC分析和帕氏-巴布洛克线性回归结果,将该微阵列与现有的基于平板的类似物(即ALLERG-O-LIQ和sIgG4 ELISA)进行了比较。
在过敏诊断中应用该方法将为同时进行患者初步筛查以及获取有关过敏严重程度和选择合适治疗方法的额外信息提供可能。