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基于电伤口愈合阻抗特性的细胞活力评估方法。

A cell viability assessment approach based on electrical wound-healing impedance characteristics.

机构信息

School of Electrical and Information Engineering, Jiangsu University, Zhenjiang, Jiangsu 212013, China.

School of Medicine, Jiangsu University, Zhenjiang, Jiangsu 212013, China.

出版信息

Biosens Bioelectron. 2019 Jan 15;124-125:25-32. doi: 10.1016/j.bios.2018.09.080. Epub 2018 Sep 22.

Abstract

Cell viability evaluation is very meaningful for cancer treatment and cell proliferation is an effective evaluation criterion for cell viability. Traditionally, cell proliferation rate is obtained only by monitoring for several cell cycles (about 12 h) and yet there is no rapid assessment method to evaluate cell proliferation. In this paper, a rapid, real-time and online assessment approach (about 12.5 min) of cell proliferation based on electrical wound-healing impedance characteristics is proposed to evaluate the cell proliferation rate and improve cell viability assessment. The electrical wounding threshold u is firstly studied, then an electrical signal (u < u) is applied to analyze cell recovery impedance characteristics, next an electrical signal (u > u) is applied to wound cells on the electrodes to death. The real-time monitoring of cell proliferation is realized by Chi660E. The results indicate that the speed of cell recovery and proliferation become slower with a higher concentration of HO added. On this basis, a model of the relationship between cell recovery impedance characteristics and cell proliferation is built for cell proliferation evaluation. Finally, the effect of temperature on cell recovery is also discussed to provide theoretical support for influencing factors of the biosensor design.

摘要

细胞活力评估对于癌症治疗非常有意义,细胞增殖是细胞活力的有效评估标准。传统上,只能通过监测几个细胞周期(约 12 小时)来获得细胞增殖率,而目前还没有快速评估细胞增殖的方法。在本文中,提出了一种基于电伤口愈合阻抗特性的快速、实时和在线评估细胞增殖的方法(约 12.5 分钟),以评估细胞增殖率并提高细胞活力评估。首先研究电伤口愈合的阈值 u,然后施加电信号(u < u)来分析细胞恢复阻抗特性,接着施加电信号(u > u)来使电极上的细胞死亡。通过 Chi660E 实现了细胞增殖的实时监测。结果表明,随着 HO 添加浓度的增加,细胞恢复和增殖的速度变得更慢。在此基础上,建立了细胞恢复阻抗特性与细胞增殖关系的模型,用于细胞增殖评估。最后,还讨论了温度对细胞恢复的影响,为生物传感器设计的影响因素提供了理论支持。

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