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细胞间连接变化的介电阻抗谱的不确定性量化和敏感性分析。

Uncertainty Quantification and Sensitivity Analysis for the Electrical Impedance Spectroscopy of Changes to Intercellular Junctions Induced by Cold Atmospheric Plasma.

机构信息

Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou 215163, China.

School of Biomedical Engineering (Suzhou), Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 215000, China.

出版信息

Molecules. 2022 Sep 9;27(18):5861. doi: 10.3390/molecules27185861.

Abstract

The influence of pertinent parameters of a Cole-Cole model in the impedimetric assessment of cell-monolayers was investigated with respect to the significance of their individual contribution. The analysis enables conclusions on characteristics, such as intercellular junctions. Especially cold atmospheric plasma (CAP) has been proven to influence intercellular junctions which may become a key factor in CAP-related biological effects. Therefore, the response of rat liver epithelial cells (WB-F344) and their malignant counterpart (WB-ras) was studied by electrical impedance spectroscopy (EIS). Cell monolayers before and after CAP treatment were analyzed. An uncertainty quantification (UQ) of Cole parameters revealed the frequency cut-off point between low and high frequency resistances. A sensitivity analysis (SA) showed that the Cole parameters, and were the most sensitive, while and were the least sensitive. The temporal development of major Cole parameters indicates that CAP induced reversible changes in intercellular junctions, but not significant changes in membrane permeability. Sustained changes of suggested that long-lived ROS, such as HO, might play an important role. The proposed analysis confirms that an inherent advantage of EIS is the real time observation for CAP-induced changes on intercellular junctions, with a label-free and in situ method manner.

摘要

Cole-Cole 模型相关参数对细胞单层阻抗评估的影响,以及它们各自贡献的重要性进行了研究。该分析可得出关于细胞间连接等特性的结论。特别是冷等离体大气压等离子体(CAP)已被证明可影响细胞间连接,这可能成为与 CAP 相关的生物学效应的关键因素。因此,通过电阻抗谱(EIS)研究了大鼠肝上皮细胞(WB-F344)及其恶性对应物(WB-ras)的反应。分析了 CAP 处理前后的细胞单层。Cole 参数的不确定性量化(UQ)揭示了低频和高频电阻之间的频率截止点。敏感性分析(SA)表明,Cole 参数 、 和 最敏感,而 、 最不敏感。主要 Cole 参数的时间发展表明,CAP 诱导了细胞间连接的可逆变化,但对膜通透性没有显著影响。 的持续变化表明,HO 等长寿命 ROS 可能发挥重要作用。所提出的分析证实,EIS 的固有优势是能够实时观察 CAP 诱导的细胞间连接变化,采用无标记和原位方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2a7/9503961/dba8e67ebfad/molecules-27-05861-g001a.jpg

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