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一种新的在水相环境中具有分子选择性的太赫兹传感策略:太赫兹衰减全反射光谱与智能水凝胶集成。

A novel THz molecule-selective sensing strategy in aqueous environments: THz-ATR spectroscopy integrated with a smart hydrogel.

机构信息

Department of Laboratory Medicine, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, 400038, China.

Department of Laboratory Medicine, Daping Hospital, Third Military Medical University (Army Medical University), Chongqing, 400042, China.

出版信息

Talanta. 2021 Jun 1;228:122213. doi: 10.1016/j.talanta.2021.122213. Epub 2021 Feb 16.

Abstract

Terahertz (THz) spectroscopy, with fascinating advantages for biomedical applications, is still in its infancy in terms of the selective detection of aqueous biomolecules because the strong absorption of solvent water always obscures the THz spectroscopic features of biomolecules. Nevertheless, solvent water is not a passive spectator but a useful indicator, as this proposed strategy describes. This strategy utilizes THz attenuated total reflection (THz-ATR) spectroscopy to probe the glucose-induced hydration state changes of smart hydrogels for label-free and selective detection of aqueous glucose. A notable dramatic increase in both the THz absorption coefficient and hydration state (calculated by weighing) of the smart hydrogel was observed with increasing aqueous glucose concentration, which was further verified by a simple two-component model. For aqueous glucose sensing, this method surpasses individual THz-ATR devices and exhibits suitable sensitivity, ideal selectivity and excellent reusability. Moreover, the proposed strategy may provide an alternative option for the selective detection of various aqueous molecules by THz spectroscopy.

摘要

太赫兹(THz)光谱学在生物医学应用方面具有迷人的优势,但在选择性检测水溶液生物分子方面仍处于起步阶段,因为溶剂水的强烈吸收总是会掩盖生物分子的太赫兹光谱特征。然而,正如所提出的策略所述,溶剂水并不是一个被动的旁观者,而是一个有用的指标。该策略利用太赫兹衰减全反射(THz-ATR)光谱技术探测智能水凝胶中葡萄糖引起的水合状态变化,实现对水溶液中葡萄糖的无标记和选择性检测。随着水溶液中葡萄糖浓度的增加,智能水凝胶的太赫兹吸收系数和水合状态(通过称重计算)均显著增加,这一现象进一步通过一个简单的双组分模型得到了验证。在水溶液葡萄糖传感方面,该方法优于单个 THz-ATR 设备,表现出适宜的灵敏度、理想的选择性和优异的可重复性。此外,所提出的策略可能为通过太赫兹光谱技术选择性检测各种水溶液分子提供了另一种选择。

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