Institute of Biomedical Engineering, National Taiwan University, Taipei 10617, Taiwan.
Anal Chem. 2010 Feb 15;82(4):1207-12. doi: 10.1021/ac901797j.
We report that gold/zinc oxide (Au/ZnO) nanocomposite films were effectively employed to enhance the performance of surface plasmon resonance (SPR) for the detection of tumor markers. Carbohydrate antigen 15.3 (CA15-3), a tumor marker for breast cancer, was chosen as a model analyte. We analyzed intensity response to the samples at various concentrations (0.0125 U/mL to 160 U/mL) in pleural fluid to evaluate the detection capability of the SPR biosensor based on Au/ZnO thin films. The linear range extended from 1 to 40 U/mL with a correlation coefficient of R(2) = 0.991 and a limit of detection reaching 0.025 U/mL at a signal-to-noise ratio of 3:1. Compared with the degree of the shift in SPR intensity induced by the specific binding event between antibody and antigen, the change of intensity on the Au/ZnO layers was increased by at least 2 fold over that on the gold/chromium (Au/Cr) layers. In addition, we determined that the Au/ZnO layers allowed for a detection limit 4 times lower than the Au/Cr layers, which are in widespread use as the sensing interfaces in current SPR-based detectors. In conclusion, the use of Au/ZnO films greatly enhanced the SPR signal yield for this bimolecular interaction and showed high sensitivity.
我们报告称,金/氧化锌(Au/ZnO)纳米复合材料薄膜可有效用于提高表面等离子体共振(SPR)的性能,以用于检测肿瘤标志物。选择碳水化合物抗原 15.3(CA15-3)作为肿瘤标志物用于乳腺癌作为模型分析物。我们分析了在不同浓度(0.0125 U/mL 至 160 U/mL)的胸腔液中的样品的强度响应,以评估基于 Au/ZnO 薄膜的 SPR 生物传感器的检测能力。线性范围从 1 扩展到 40 U/mL,相关系数 R(2) = 0.991,信噪比为 3:1 时检测限达到 0.025 U/mL。与抗体和抗原之间的特异性结合事件引起的 SPR 强度变化的程度相比,Au/ZnO 层上的强度变化至少增加了 2 倍,而 Au/Cr(Au/Cr)层上的强度变化则增加了 2 倍。此外,我们确定 Au/ZnO 层的检测限比当前广泛用作基于 SPR 的检测器中传感界面的 Au/Cr 层低 4 倍。总之,Au/ZnO 薄膜的使用大大提高了这种双分子相互作用的 SPR 信号产量,并表现出了高灵敏度。