The Key Laboratory of Opto-Electronics Information and Technology, Institute of Laser and Opto-Electronics, College of Precision Instruments and Opto-Electronics Engineering, Tianjin University, Tianjin 300072, China.
School of Opto-Electronic Engineering, Zaozhuang University, Zaozhuang 277160, China.
ACS Appl Mater Interfaces. 2020 Mar 11;12(10):11388-11396. doi: 10.1021/acsami.0c00095. Epub 2020 Mar 2.
It is vital and promising for portable and disposable biosensing devices to achieve on-site detection and analysis of cancer cells. Although traditional labeling techniques provide an accurate quantitative measurement, the complicated cell staining and high-cost measurements limit their further development. Here, we demonstrate a nonimmune biosensing technology. The plasmonic biosensors, which are based on anisotropic resonant split ring resonators in the terahertz range, successfully realize the antibody-free recognition of cancer cells. The dependences of Δ and the fitted phase slope on the cancer cell concentration at different polarizations give new perspective in hexagonal radar maps. The results indicate that the lung cancer cell A549 and liver cancer cell HepG2 can be distinguished and determined simply based on the enclosed shapes in the radar maps without any antibody introduction. The minimum concentration of identification reduces to as low as 1 × 10 cells/mL and such identification can be kept valid in a wide range of cell concentration, ranging from 10 to 10. The construction of two-dimensional extinction intensity cards of corresponding cancer cells based on the wavelet transform method also supplies corresponding information for the antibody-free recognition and determination of two cancer cells. Our plasmonic metasurface biosensors show a great potential in the determination and recognition of label-free cancer cells, being an alternative to nonimmune biosensing technology.
对于便携式和一次性生物传感设备来说,实现现场检测和分析癌细胞至关重要且前景广阔。虽然传统的标记技术提供了准确的定量测量,但复杂的细胞染色和高成本测量限制了它们的进一步发展。在这里,我们展示了一种非免疫生物传感技术。基于太赫兹范围内各向异性谐振分裂环谐振器的等离子体生物传感器成功实现了对癌细胞的无抗体识别。在不同偏振下,Δ和拟合相位斜率对癌细胞浓度的依赖性在六角雷达图中提供了新的视角。结果表明,基于雷达图中的封闭形状,无需引入任何抗体,就可以简单地区分和确定肺癌细胞 A549 和肝癌细胞 HepG2。识别的最低浓度降低到低至 1×10 个细胞/mL,并且这种识别在 10 到 10 的宽细胞浓度范围内仍然有效。基于小波变换方法构建的相应癌细胞二维消光强度卡也为两种癌细胞的无抗体识别和测定提供了相应信息。我们的等离子体超表面生物传感器在无标记癌细胞的测定和识别方面显示出巨大的潜力,是对非免疫生物传感技术的一种替代。