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基于扭曲双层超表面的太赫兹圆偏振传感用于蛋白质变性研究

Terahertz circular polarization sensing for protein denaturation based on a twisted dual-layer metasurface.

作者信息

Zhang Ziyang, Fan Fei, Shi Weinan, Zhang Tianrui, Chang Shengjiang

机构信息

Institute of Modern Optics, Nankai University, Tianjin 300350, China.

Tianjin Key Laboratory of Optoelectronic Sensor and Sensing Network Technology, Tianjin 300350, China.

出版信息

Biomed Opt Express. 2021 Dec 7;13(1):209-221. doi: 10.1364/BOE.443473. eCollection 2022 Jan 1.

Abstract

Protein denaturation has very important research value in nutrition, biomedicine, and the food industry, which is caused by the changes in the molecular structure of the protein. Since the collective vibrational and torsional modes of protein molecules are within the terahertz (THz) frequency range, THz spectroscopy can characterize the protein denaturation with several advantages of non-contact, label-free, real-time, and non-destructive. Therefore, we proposed a reflective THz time-domain polarization spectroscopy sensing method, and use a flexible twisted dual-layer metasurface film as a sensor to realize the thermal denaturation sensing, concentration sensing, and types identification of protein aqueous solutions. The experiment tested three proteins (bovine serum albumin, whey protein, and ovalbumin), and the results show that: for the thermal denaturation sensing, its detection sensitivity can reach 6.30 dB/% and the detection accuracy is 0.77%; for the concentration sensing, the detection sensitivity and detection accuracy reach 52.9 dB·mL/g and 3.6·10 g/mL, respectively; in addition, different protein types can be distinguished by the difference of the circular polarization spectra.

摘要

蛋白质变性在营养、生物医学和食品工业中具有非常重要的研究价值,它是由蛋白质分子结构的变化引起的。由于蛋白质分子的集体振动和扭转模式处于太赫兹(THz)频率范围内,太赫兹光谱能够以非接触、无标记、实时和无损等多种优势来表征蛋白质变性。因此,我们提出了一种反射式太赫兹时域偏振光谱传感方法,并使用柔性扭曲双层超表面薄膜作为传感器,以实现蛋白质水溶液的热变性传感、浓度传感和类型识别。实验测试了三种蛋白质(牛血清白蛋白、乳清蛋白和卵清蛋白),结果表明:对于热变性传感,其检测灵敏度可达6.30 dB/%,检测精度为0.77%;对于浓度传感,检测灵敏度和检测精度分别达到52.9 dB·mL/g和3.6·10 g/mL;此外,不同类型的蛋白质可通过圆偏振光谱的差异来区分。

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