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A micro device for impedance and mechanical characterization of biological cells

机译:一种用于生物细胞阻抗和机械表征的微型装置

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This paper presents a microfluidic device for simultaneous electromechanical characterization of single cells. The device performs two types of cellular characterization (impedance spectroscopy and micropipette aspiration) on a single chip to enable cell electrical and mechanical characterization. To investigate the performance of the device design, electrical and mechanical properties of MC-3T3 osteoblast cells were measured. Based on electrical models, membrane capacitance of MC-3T3 cells was determined to be 3.39±1.23 pF and 2.99±0.82 pF at the aspiration pressure of 50 Pa and 100 Pa, respectively. Cytoplasm resistance values were 110.1±37.7 kΩ (50 Pa) and 145.2±44.3 kΩ (100 Pa). Aspiration length of cells was found to be 0.813±0.351 µm at 50 Pa and 1.771±0.623 µm at 100 Pa. Quantified Young's modulus values were 377±189 Pa at 50 Pa and 344±156 Pa at 100 Pa. Experimental results demonstrate the device's capability for characterizing both electrical and mechanical properties of single cells.
机译:本文介绍了一种用于单细胞的同时机电表征的微流体装置。该器件在单个芯片上执行两种类型的蜂窝表征(阻抗光谱和微型插脚抽吸,以实现细胞电气和机械表征。为了研究装置设计的性能,测量MC-3T3成骨细胞的电气和力学性能。基于电模型,测定MC-3T3细胞的膜电容为3.39± 1.23 PF和2.99±在50Pa和100pa的抽吸压力下分别为0.82pf。细胞质抗性值为110.1± 37.7 kΩ (50 pa)和145.2± 44.3 kΩ (100 pa)。发现细胞的吸入长度为0.813± 0.351µ m处50 pa和1.771± 0.623µ m在100 pa。量化的杨氏模量值为377± 189 pa 50Pa和344± 156 pa在100 pa。实验结果证明了设备表征单细胞的电气和力学性能的能力。

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