Department of Otolaryngology-Head and Neck Surgery, Central Laboratory, Renmin Hospital of Wuhan University, 238 Jie-Fang Road, Wuhan, 430060, Hubei, China.
Institute of Otolaryngology-Head and Neck Surgery, Renmin Hospital of Wuhan University, 238 Jie-Fang Road, Wuhan, 430060, Hubei, China.
Anal Bioanal Chem. 2020 Mar;412(8):1785-1794. doi: 10.1007/s00216-020-02422-0. Epub 2020 Feb 12.
The prevalence of allergic rhinitis (AR) is increasing worldwide. However, the current systems used to measure levels of immunoglobulin E (IgE) in sera are associated with several disadvantages that limit their further application. Consequently, there is a need to develop novel highly sensitive strategies that can rapidly detect IgE in a quantitative manner. The development of such systems will significantly enhance our ability to diagnose, treat, and even prevent AR. Herein, we describe our experience of using quantum dot-based lateral flow immunoassay (QD-LFIA), combined with a portable fluorescence immunoassay chip detector (PFICD), to detect serum-specific IgE against Dermatophagoides pteronyssinus (Der-p) and Dermatophagoides farinae (Der-f), two common mite allergens in China. Our data showed that our system could detect serum-specific levels of IgE against Der-p and Der-f as low as 0.093 IU/mL and 0.087 IU/mL, respectively. We also established a standard curve to determine serum-specific IgE concentrations that correlated well with the clinical BioIC microfluidics system. The sensitivity of our assay was 96.7% for Der-p and 95.5% for Der-f, while the specificity was 87.2% for Der-p and 85.3% for Der-f. Collectively, our results demonstrate that QD-LFIA is a reliable system that could be applied to detect serum-specific IgE in accordance with clinical demands. This QD-LFIA strategy can be applied at home, in hospitals, and in pharmacies, with reduced costs and time requirements when compared with existing techniques. In the future, this system could be developed to detect other types of allergens and in different types of samples (for example, whole blood). Graphical abstract We describe our experiment using a quantum dot-based lateral flow immunoassay combined with a portable fluorescence immunoassay chip detector for both qualitative and quantitative detection of serum-specific IgE against two common mite allergens. This strategy can be applied at home, in hospitals, and in pharmacies, with reduced costs and time requirements. In the future, this system could be developed to detect other types of allergens and in different types of samples.
变应性鼻炎(AR)的患病率在全球范围内呈上升趋势。然而,目前用于测量血清中免疫球蛋白 E(IgE)水平的系统存在一些缺点,限制了其进一步应用。因此,需要开发能够快速定量检测 IgE 的新型高灵敏度策略。这种系统的发展将显著提高我们诊断、治疗甚至预防 AR 的能力。在此,我们描述了使用量子点侧向流动免疫分析(QD-LFIA)结合便携式荧光免疫分析芯片检测仪(PFICD)检测针对中国常见两种螨过敏原屋尘螨(Der-p)和粉尘螨(Der-f)的血清特异性 IgE 的经验。我们的数据表明,我们的系统可以检测到低至 0.093 IU/mL 和 0.087 IU/mL 的针对 Der-p 和 Der-f 的血清特异性 IgE 水平。我们还建立了一个标准曲线来确定与临床 BioIC 微流控系统相关的血清特异性 IgE 浓度。我们的测定法对 Der-p 的灵敏度为 96.7%,对 Der-f 的灵敏度为 95.5%,对 Der-p 的特异性为 87.2%,对 Der-f 的特异性为 85.3%。总的来说,我们的结果表明,QD-LFIA 是一种可靠的系统,可以根据临床需求应用于检测血清特异性 IgE。与现有技术相比,这种 QD-LFIA 策略可以在家庭、医院和药店中应用,成本和时间要求降低。在未来,该系统可用于检测其他类型的过敏原和不同类型的样本(例如全血)。