Du Xiangbin, Kong Jinlong, Liu Yang, Xu Qianmin, Wang Kaiqun, Huang Di, Wei Yan, Chen Weiyi, Mao Haiyang
Department of Biomedical Engineering, Research Center for Nano-biomaterials & Regenerative Medicine, College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Shanxi Key Laboratory of Material Strength & Structural Impact, Institute of Biomedical Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Micromachines (Basel). 2021 Feb 16;12(2):202. doi: 10.3390/mi12020202.
Electric cell-substrate impedance sensing exhibits a real-time and label-free feature to monitor the response of cells stimulated by various biochemical and mechanical signals. Alterations in the currents passing through the cell-electrode system characterize the impedance variations of cells. The impedance responses of HeLa cells under distinct chemotherapy drugs combine the effects of cell proliferation and cell-substrate adhesion. Optimal interdigitated electrodes were selected to explore the impedance responses of HeLa cells. Measurements of impedance of cells in response to three widely used chemotherapy drugs in clinical practice, namely cisplatin, doxorubicin, 5-fluorouracil, were performed. The results demonstrated that distinct impedance responses of HeLa cells to drugs were exhibited and a decrease in measured impedance was observed after drug treatment, accompanied by alterations in the distribution and intensity of the adhesion-related protein vinculin and the rate of cell proliferation. The link between the impedance profiles of HeLa cells and their biological functions was developed based on the circuit model. This study demonstrated the weights of cell proliferation and adhesion of HeLa cells under the treatments of DDP, DOX, and 5-FU, resulted in distinct impedance responses of cells, providing an impedance-based evaluation methodology for cervical cancer treatment.
电细胞-基质阻抗传感具有实时、无标记的特点,可用于监测细胞对各种生化和机械信号刺激的反应。通过细胞-电极系统的电流变化表征了细胞的阻抗变化。不同化疗药物作用下HeLa细胞的阻抗反应结合了细胞增殖和细胞-基质黏附的影响。选择了最佳的叉指电极来探究HeLa细胞的阻抗反应。对临床实践中三种广泛使用的化疗药物顺铂、阿霉素、5-氟尿嘧啶作用下的细胞阻抗进行了测量。结果表明,HeLa细胞对药物表现出不同的阻抗反应,药物处理后测量的阻抗降低,同时黏附相关蛋白纽蛋白的分布和强度以及细胞增殖速率发生改变。基于电路模型建立了HeLa细胞阻抗谱与其生物学功能之间的联系。本研究证明了在顺铂、阿霉素和5-氟尿嘧啶处理下HeLa细胞增殖和黏附的权重,导致细胞产生不同的阻抗反应,为宫颈癌治疗提供了一种基于阻抗的评估方法。