Centro Láser, Universidad Politécnica de Madrid, Campus Sur, 28031 Madrid, Spain.
Biosens Bioelectron. 2011 Aug 15;26(12):4842-7. doi: 10.1016/j.bios.2011.06.010. Epub 2011 Jun 17.
In a previous work we introduced the term Bio-Photonic Sensing Cells (BICELLs), referred to periodic networks of nano-pillar suitable for biosensing when are vertically interrogated. In this article, we demonstrate the biosensing capabilities of a type of micrometric size BICELLs made of SU-8 nano-pillars fabricated over transparent substrates. We verify the biochips functionality comparing the theoretical simulations with the experimental results when are optically interrogated in transmission. We also demonstrate a sensitivity enhancement by reducing the pitch among nano-pillars from 800 to 700 nm. Thus, the Limit of Detection achievable in these types of BICELLs is in the order of 64 pg/mL for 700 nm in pitch among nano-pillars in comparison with 292 pg/mL for 800 nm in pitch when are interrogated by Fourier Transform Visible and Infrared Spectrometry. The experiments exhibited a good reproducibility with a relative standard deviation of 0.29% measured within 8 days for a specific concentration. Finally, BICELLs functionality was tested in real conditions with unpurified rabbit serum for detecting anti-gestrinone antibodies, demonstrating the high performance of this type of BICELLs to detect specific antibodies having immobilized the suitable bioreceptors onto the sensing surface.
在之前的工作中,我们引入了生物光子传感单元(BICELLs)这一术语,它指的是适合垂直探测的纳米柱周期性网络,适用于生物传感。在本文中,我们展示了由 SU-8 纳米柱构成的微米级 BICELLs 的生物传感能力,这些纳米柱是在透明衬底上制造的。我们通过在传输中进行光学探测,将理论模拟与实验结果进行比较,验证了生物芯片的功能。我们还通过将纳米柱之间的间距从 800nm 减小到 700nm,实现了灵敏度的增强。因此,在通过傅里叶变换可见和近红外光谱法探测时,这些类型的 BICELLs 在 700nm 纳米柱间距下的检测限可达到 64pg/mL,而在 800nm 纳米柱间距下的检测限为 292pg/mL。实验显示出良好的重现性,在特定浓度下,8 天内的相对标准偏差为 0.29%。最后,我们在实际条件下用未纯化的兔血清测试了 BICELLs 的功能,以检测抗孕烯酮抗体,证明了这种 BICELLs 类型在检测固定在传感表面上的合适生物受体的特定抗体方面具有很高的性能。