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太赫兹热曲线分析用于蓝藻的超材料传感。

Metamaterial Sensing of Cyanobacteria Using THz Thermal Curve Analysis.

机构信息

Department of Physics and Department of Energy Systems Research, Ajou University, Suwon 16499, Republic of Korea.

出版信息

Biosensors (Basel). 2024 Oct 23;14(11):519. doi: 10.3390/bios14110519.

Abstract

In this study, we perform thermal curve analyses based on terahertz (THz) metamaterials for the label-free sensing of cyanobacteria. In the presence of bacterial films, significant frequency shifts occur at the metamaterial resonance, but these shifts become saturated at a certain thickness owing to the limited sensing volume of the metamaterial. The saturation value was used to determine the dielectric constants of various cyanobacteria, which are crucial for dielectric sensing. For label-free identification, we performed thermal curve analysis of THz metamaterials coated with cyanobacteria. The resonant frequency of the cyanobacteria-coated metasensor changed with temperature. The differential thermal curves (DTC) obtained from temperature-dependent resonance exhibited peaks unique to individual cyanobacteria, which helped identify individual species. Interestingly, despite being classified as Gram negative, cyanobacteria exhibit DTC profiles similar to those of Gram-positive bacteria, likely due to their unique extracellular structures. DTC analysis can reveal unique characteristics of various cyanobacteria that are not easily accessible by conventional approaches.

摘要

在这项研究中,我们基于太赫兹(THz)超材料进行了热曲线分析,用于对蓝藻进行无标记传感。在存在细菌膜的情况下,超材料共振会发生明显的频率移动,但由于超材料的感应体积有限,这些移动在一定厚度下会达到饱和。饱和值用于确定各种蓝藻的介电常数,这对介电感应至关重要。为了进行无标记识别,我们对涂有蓝藻的 THz 超材料进行了热曲线分析。涂有蓝藻的超敏传感器的共振频率随温度而变化。从依赖温度的共振获得的微分热曲线(DTC)显示出每个蓝藻特有的峰,这有助于识别各个物种。有趣的是,尽管被归类为革兰氏阴性菌,但蓝藻的 DTC 曲线与革兰氏阳性菌相似,这可能是由于它们独特的细胞外结构。DTC 分析可以揭示各种蓝藻的独特特征,这些特征不易通过传统方法获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6c/11591856/4378db0e81f4/biosensors-14-00519-g001.jpg

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