Nanobiotechnology Department, New Technologies Research Group, Pasteur Institute of Iran, Tehran, 1316943551, Iran.
Applied Biotechnology Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran.
Sci Rep. 2023 Dec 9;13(1):21851. doi: 10.1038/s41598-023-48766-2.
The procedures currently used for hepatitis B (HB) detection are not suitable for screening, clinical diagnosis, and point-of-care testing (POCT). Therefore, we developed and tested a QCM-based immunosensor by surface modification with AuNP-PEIs to amplify the signal and provide an oriented-immobilization surface. The AuNP-PEIs were characterized by ICP-Mass, UV/Vis, DLS, FE-SEM, and ATR-FTIR. After coating AuNP-PEIs on the gold electrode surface, anti-HBsAg antibodies were immobilized using NHS/EDC chemistry based on response surface methodology (RSM) optimization. The efficiency of the immunosensor was assessed by human sera and data were compared to gold-standard ELISA using receiver-operating-characteristic (ROC) analysis. FE-SEM, AFM, EDS, and EDS mapping confirmed AuNP-PEIs are homogeneously distributed on the surface with a high density and purity. After antibody immobilization, the immunosensor exhibited good recognition of HBsAg with a calibration curve of ∆F = - 6.910ex + 10(R = 0.9905), a LOD of 1.49 ng/mL, and a LOQ of 4.52 ng/mL. The immunosensor yielded reliable and accurate results with a specificity of 100% (95% CI 47.8-100.0) and sensitivity of 100% (95% CI 96.2-100.0). In conclusion, the fabricated immunosensor has the potential as an analytic tool with high sensitivity and specificity. However, further investigations are needed to convert it to a tiny lab-on-chip for HB diagnosis in clinical samples.
目前用于乙型肝炎(HB)检测的方法不适合用于筛查、临床诊断和即时检测(POCT)。因此,我们开发并测试了一种基于 QCM 的免疫传感器,通过表面修饰 AuNP-PEIs 来放大信号并提供定向固定表面。AuNP-PEIs 通过 ICP-Mass、UV/Vis、DLS、FE-SEM 和 ATR-FTIR 进行表征。在金电极表面涂覆 AuNP-PEIs 后,通过 NHS/EDC 化学基于响应面法(RSM)优化来固定抗-HBsAg 抗体。通过人血清评估免疫传感器的效率,并使用接收者操作特征(ROC)分析将数据与金标准 ELISA 进行比较。FE-SEM、AFM、EDS 和 EDS 映射证实 AuNP-PEIs 均匀分布在表面上,具有高密度和高纯度。抗体固定后,免疫传感器对 HBsAg 表现出良好的识别能力,校准曲线为 ∆F = - 6.910ex + 10(R = 0.9905),LOD 为 1.49 ng/mL,LOQ 为 4.52 ng/mL。该免疫传感器具有可靠和准确的结果,特异性为 100%(95% CI 47.8-100.0),灵敏度为 100%(95% CI 96.2-100.0)。总之,所制备的免疫传感器具有高灵敏度和特异性,作为分析工具具有潜力。然而,需要进一步的研究将其转化为用于临床样本中 HB 诊断的微小芯片实验室。