Shi Wei-Nan, Fan Fei, Zhang Tian-Rui, Liu Jia-Yue, Wang Xiang-Hui, Chang ShengJiang
Institute of Modern Optics, Nankai University, Tianjin Key Laboratory of Micro-scale Optical Information Science and Technology, Tianjin 300350, China.
Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology, Tianjin 300350, China.
Biomed Opt Express. 2023 Feb 10;14(3):1096-1106. doi: 10.1364/BOE.484181. eCollection 2023 Mar 1.
The efficient sensing of amino acids, especially the distinction of their chiral enantiomers, is important for biological, chemical, and pharmaceutical research. In this work, a THz phase shift sensing method was performed for amino acid detection based on a polarization-dependent electromagnetically induced transparency (EIT) metasurface. More importantly, a method for binding the specific amino acids to the functional proteins modified on the metasurface was developed based on the isoelectric point theory so that the specific recognition for Arginine (Arg) was achieved among the four different amino acids. The results show that via high- phase shift, the detection precision for L-Arg is 2.5 × 10g /ml, much higher than traditional sensing parameters. Due to the specific electrostatic adsorption by the functionalized metasurface to L-Arg, its detection sensitivity and precision are 22 times higher than the other amino acids. Furthermore, by comparing nonfunctionalized and functionalized metasurfaces, the D- and L-chiral enantiomers of Arg were distinguished due to their different binding abilities to the functionalized metasurface. Therefore, this EIT metasurface sensor and its specific binding method improve both detection precision and specificity in THz sensing for amino acids, and it will promote the development of THz highly sensitive detection of chiral enantiomers.
高效检测氨基酸,尤其是区分其手性对映体,对于生物、化学和药物研究至关重要。在这项工作中,基于偏振依赖的电磁诱导透明(EIT)超表面,开展了一种用于氨基酸检测的太赫兹相移传感方法。更重要的是,基于等电点理论开发了一种将特定氨基酸与修饰在超表面上的功能蛋白结合的方法,从而在四种不同氨基酸中实现了对精氨酸(Arg)的特异性识别。结果表明,通过高相移,L-Arg的检测精度为2.5×10g/ml,远高于传统传感参数。由于功能化超表面对L-Arg的特异性静电吸附,其检测灵敏度和精度比其他氨基酸高22倍。此外,通过比较非功能化和功能化超表面,由于Arg的D-和L-手性对映体与功能化超表面的结合能力不同而得以区分。因此,这种EIT超表面传感器及其特异性结合方法提高了太赫兹传感中氨基酸检测的精度和特异性,并将推动太赫兹对手性对映体高灵敏度检测的发展。