Department of Biomedical Engineering, National Yang Ming Chiao Tung University, Taipei 11221, Taiwan.
Research Center for Applied Sciences, Academia Sinica, Taipei 11529, Taiwan.
Sensors (Basel). 2024 Jun 28;24(13):4214. doi: 10.3390/s24134214.
Electric cell-substrate impedance sensing has been used to measure transepithelial and transendothelial impedances of cultured cell layers and extract cell parameters such as junctional resistance, cell-substrate separation, and membrane capacitance. Previously, a three-path cell-electrode model comprising two transcellular pathways and one paracellular pathway was developed for the impedance analysis of MDCK cells. By ignoring the resistances of the lateral intercellular spaces, we develop a simplified three-path model for the impedance analysis of epithelial cells and solve the model equations in a closed form. The calculated impedance values obtained from this simplified cell-electrode model at frequencies ranging from 31.25 Hz to 100 kHz agree well with the experimental data obtained from MDCK and OVCA429 cells. We also describe how the change in each model-fitting parameter influences the electrical impedance spectra of MDCK cell layers. By assuming that the junctional resistance is much smaller than the specific impedance through the lateral cell membrane, the simplified three-path model reduces to a two-path model, which can be used for the impedance analysis of endothelial cells and other disk-shaped cells with low junctional resistances. The measured impedance spectra of HUVEC and HaCaT cell monolayers nearly coincide with the impedance data calculated from the two-path model.
电细胞-基底阻抗感应已被用于测量培养细胞层的跨上皮和跨内皮阻抗,并提取细胞参数,如连接电阻、细胞-基底分离和膜电容。先前,已经开发了一个由两个跨细胞途径和一个旁细胞途径组成的三路径细胞-电极模型,用于 MDCK 细胞的阻抗分析。通过忽略细胞间横向空间的电阻,我们为上皮细胞的阻抗分析开发了一个简化的三路径模型,并以封闭形式求解模型方程。从这个简化的细胞-电极模型计算出的阻抗值在 31.25 Hz 至 100 kHz 的频率范围内与从 MDCK 和 OVCA429 细胞获得的实验数据吻合得很好。我们还描述了每个模型拟合参数的变化如何影响 MDCK 细胞层的电阻抗谱。通过假设连接电阻远小于侧向细胞膜的特定阻抗,简化的三路径模型简化为一个两路径模型,该模型可用于具有低连接电阻的内皮细胞和其他盘形细胞的阻抗分析。HUVEC 和 HaCaT 细胞单层的测量阻抗谱与从两路径模型计算出的阻抗数据几乎吻合。