Higher Educational Key Laboratory for Nano Biomedical Technology of Fujian Province, Department of Pharmaceutical Analysis , Fujian Medical University , Fuzhou 350004 , China.
Department of Pharmacy , Affiliated Quanzhou First Hospital of Fujian Medical University , Quanzhou 362000 , China.
ACS Appl Mater Interfaces. 2019 Sep 4;11(35):31729-31734. doi: 10.1021/acsami.9b11599. Epub 2019 Aug 26.
Few-atom gold nanoclusters (AuNCs) have been fabricated and used for various fields owing to their remarkable optical and photophysical features. However, the rational design for the antibody-mediated synthesis of fluorescent AuNCs for direct antigen-antibody reactions remains unexplored. In this work, immunoglobulin G (IgG)-functionalized AuNCs (IgG-AuNCs) were successfully prepared via a facile and fast biomineralization process. The generated IgG-AuNCs can emit intense red fluorescence with a high photoluminescence quantum yield. Besides strong emission, the bioactivity of IgG on the IgG-AuNCs can be retained. Surface plasmon resonance measurements suggested that IgG-AuNCs can bind to goat anti-human IgG with an affinity constant of 6.21 × 10 M. A simple detection method was then developed using a dot-blot immunoassay with IgG-AuNCs as fluorescent tags. Experimental results confirmed that the IgG-AuNC-based fluorescent reporters had many advantages such as low nonspecific adsorption and good photostability, offering immense potential for the development of efficient biosensors. This work can be extended to other specific antibodies to produce multifunctional AuNCs and utilized to detect and monitor targeted analytes and biological events of interest.
由于具有显著的光学和光物理特性,少数原子金纳米团簇(AuNCs)已被制备并用于各种领域。然而,针对抗体介导的用于直接抗原-抗体反应的荧光 AuNCs 的合理设计仍未被探索。在这项工作中,通过简便快速的生物矿化过程成功制备了免疫球蛋白 G(IgG)功能化的 AuNCs(IgG-AuNCs)。所生成的 IgG-AuNCs 可发射出强红色荧光,具有高的光致发光量子产率。除了强发射外,IgG-AuNCs 上的 IgG 的生物活性可以被保留。表面等离子体共振测量表明,IgG-AuNCs 可以与人抗山羊 IgG 结合,亲和力常数为 6.21×10^M。然后使用基于 IgG-AuNCs 的荧光标记物的斑点印迹免疫测定法开发了一种简单的检测方法。实验结果证实,基于 IgG-AuNC 的荧光报告物具有低非特异性吸附和良好的光稳定性等优点,为开发高效生物传感器提供了巨大的潜力。这项工作可以扩展到其他特异性抗体,以产生多功能 AuNCs,并用于检测和监测目标分析物和感兴趣的生物事件。