College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming 650500, People's Republic of China.
Department of Chemistry and Biochemistry, North Dakota State University, Fargo, North Dakota 58105, USA.
Mikrochim Acta. 2017 Jul;184(7):2023-2029. doi: 10.1007/s00604-017-2176-5. Epub 2017 Mar 31.
The authors describe a gold nanocage-based lateral flow strip biosensor (LFSB) for low-cost and sensitive detection of IgG. This protein was used as a model analyte to demonstrate the proof-of-concept. The method combines the unique optical properties of gold nanocages (GNCs) with highly efficient chromatographic separation. A sandwich-type of immunoreactions occurs on the GNC-based LFSB which has the attractive features of avoiding multiple incubation, separation, and washing steps. The captured GNCs on the purple test zone and control zone of the biosensor are producing characteristic purple bands, and this enables IgG even to be visually detected. Quantitatation was accomplished by reading the intensities of the bands with a portable strip reader. The LFSB fabrication and assay parameters were optimized. The biosensor displays a linear response in the 0.5 to 50 ng·mL IgG concentration range, and it has a 15 min assay time. The detection limit is 0.1 ng·mL of IgG, which is 2.5 times lower than that when using a gold nanoparticle-based LFSB. In our perception, this assay has a wide potential for the detection of other proteins and species for which respective antibodies are available.
作者描述了一种基于金纳米笼的侧向流条生物传感器(LFSB),用于低成本和灵敏地检测 IgG。该蛋白质被用作模型分析物来证明其概念验证。该方法结合了金纳米笼(GNCs)的独特光学特性和高效的色谱分离。在基于 GNC 的 LFSB 上发生三明治型免疫反应,具有避免多次孵育、分离和洗涤步骤的优点。在生物传感器的紫色测试区和对照区捕获的 GNC 产生特征性的紫色条带,这使得 IgG 甚至可以进行目视检测。通过使用便携式条带读取器读取条带的强度来完成定量。优化了 LFSB 的制造和分析参数。该生物传感器在 0.5 至 50 ng·mL IgG 浓度范围内呈现线性响应,并且具有 15 分钟的分析时间。检测限为 0.1 ng·mL 的 IgG,比使用基于金纳米粒子的 LFSB 低 2.5 倍。在我们看来,这种检测方法具有广泛的潜力,可用于检测其他具有相应抗体的蛋白质和物种。