College of Chemistry, Jilin Province Research Center for Engineering and Technology of Spectral Analytical Instruments, Jilin University, Qianjin Street 2699, Changchun, 130012, China.
College of Chemistry, Jilin Province Research Center for Engineering and Technology of Spectral Analytical Instruments, Jilin University, Qianjin Street 2699, Changchun, 130012, China.
Talanta. 2022 Aug 15;246:123496. doi: 10.1016/j.talanta.2022.123496. Epub 2022 Apr 21.
SPR is a mature optical biosensor technology for detecting biomolecular interactions without fluorescence or enzyme labeling. In this paper, we acquire a sensitive SPR biosensor based on ZnO@Au nanomaterial, and the classical sandwich strategy using biotin-streptavidin for secondary signal amplification system was used to detect human IgG (hIgG). Nano-zinc oxide (ZnO) has the dual characteristics of nanocomposite and traditional zinc oxide, with large specific surface area and high chemical activity. Besides, the gold-coated ZnO nanocrystals improve the optical properties of ZnO and enlarge the loading capacity with better biocompatibility. Therefore, a sensing platform based on PDA-ZnO@Au nanomaterial was constructed on gold film modified with mercaptan. Meanwhile, the biotin-avidin system in SPR sensor field has been rapidly developed and applied. Due to the highly selection of streptavidin (SA) and biotin interact with each other, GNRs-SA-biotin-Ab (GSAB-Ab) were constructed to obtain the secondary enhancement of SPR signal. The influences of experimental conditions were also discussed. With optimal experimental conditions, introducing GSAB-Ab conjugate combined with a sandwich format, the resulting SPR biosensor provides a favourable range for hIgG determination of 0.0375-40 μg mL. The minimum detection concentration of hIgG that can be obtained by this method is approximately 67-fold lower than the conventional SPR sensor based on gold film. The sensitivity of SPR biosensor is significantly improved in a certain range.
SPR 是一种成熟的光学生物传感器技术,可用于检测生物分子相互作用,而无需荧光或酶标记。在本文中,我们获得了一种基于 ZnO@Au 纳米材料的灵敏 SPR 生物传感器,并使用经典的三明治策略,即生物素-链霉亲和素用于二次信号放大系统,来检测人 IgG(hIgG)。纳米氧化锌(ZnO)具有纳米复合材料和传统氧化锌的双重特性,具有大的比表面积和高的化学活性。此外,金包覆的 ZnO 纳米晶改善了 ZnO 的光学性质,并扩大了负载能力,具有更好的生物相容性。因此,基于 PDA-ZnO@Au 纳米材料的传感平台在巯基修饰的金膜上构建。同时,SPR 传感器领域中的生物素-亲和素系统得到了快速发展和应用。由于链霉亲和素(SA)和生物素之间的高度选择性相互作用,构建了 GNRs-SA-biotin-Ab(GSAB-Ab)以获得 SPR 信号的二次增强。还讨论了实验条件的影响。在最佳实验条件下,引入 GSAB-Ab 缀合物结合三明治格式,所得到的 SPR 生物传感器为 hIgG 测定提供了 0.0375-40μgmL 的有利范围。通过该方法可以获得的 hIgG 的最小检测浓度比基于金膜的常规 SPR 传感器低约 67 倍。SPR 生物传感器在一定范围内的灵敏度得到了显著提高。