Department of Bioengineering, University of Tokyo, Bunkyo-ku, Tokyo 113-8656, Japan.
Biochem Biophys Res Commun. 2011 Oct 14;414(1):192-8. doi: 10.1016/j.bbrc.2011.09.055. Epub 2011 Sep 16.
We have demonstrated label-free THz sensing of living body-related molecular binding using a thin metallic mesh and a polyvinylidene difluoride (PVDF) membrane. Metallic meshes in the THz region are designed for anomalous transmission phenomena derived from a resonant excitation of surface waves. Additionally, they are designed to have a sharp dip in transmittance. The metallic mesh is very sensitive to a change of the refractive index of materials attached to the metallic mesh. In this paper, we report sensing of interactions between lectin and sugar using this technique. We found that the dip frequency shift, transmittance attenuation of the dip frequency, and peak shift of the derivative spectrum of the phase shift depend on the bonding amount of lectin-sugar interactions. We also applied this technique to detect avidin-biotin interactions, leading to the detection of a small amount of biotin (0.17 pg/mm(2)).
我们使用薄金属网和聚偏二氟乙烯(PVDF)膜展示了对活体相关分子结合的无标记太赫兹(THz)传感。THz 区域中的金属网是为源自表面波共振激发的异常透射现象而设计的。此外,它们的设计具有透射率的急剧下降。金属网对附着在金属网上的材料的折射率变化非常敏感。在本文中,我们报告了使用该技术检测凝集素和糖之间相互作用的情况。我们发现,频移的陷波频率、陷波频率的透射衰减以及相位偏移导数谱的峰值偏移取决于凝集素-糖相互作用的结合量。我们还将该技术应用于检测亲和素-生物素相互作用,从而检测到少量生物素(0.17 pg/mm(2))。