Title :
Long-term impedance measurement results of single HeLa cell based on three-pillars structure
Author :
Yi-Ling Lin ; Ming-Kun Chen ; Sung-Lin Tsai ; Ling-Sheng Jang ; Min-Haw Wang
Author_Institution :
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Abstract :
The impedance analysis of single cells can provide accurate and in-depth information about their pathological condition. However, the electrical properties of single cells will be affected by measurement environment such as cell location, electrodes geometry and so on. Accordingly, this study presents the relationship between impedance characteristics and location of the single HeLa cell. This study uses a microfluidic device to capture physically single cells with three-pillars microstructure and measure the impedance of a single HeLa cell (human cervical epithelioid carcinoma) using impedance spectroscopy. Additionally, in order to understand the relationship between impedance characteristics and location of the single HeLa cell, the equivalent circuit model is established and an element.The measurement results show that the magnitude of a single HeLa cell impedance decreases and the phase of the single HeLa cell impedance changes from the hook line to the inverse line with the operating frequency from 1 to 100 kHz at operating voltage of 0.7 V in the time from 1 to 19 hours because the distance between the single HeLa cell and electrodes decrease. The single cell falls toward electrodes as time elapses after the single cell is trapped by three-pillars microstructure.
Keywords :
bioMEMS; bioelectric phenomena; cancer; cellular biophysics; electric impedance measurement; equivalent circuits; microfluidics; physiological models; cell pathological condition; electrode geometry; equivalent circuit model; frequency 1 kHz to 100 kHz; human cervical epithelioid carcinoma; impedance spectroscopy; long term impedance measurement; measurement environment; microfluidic device; single HeLa cell impedance characteristics; single HeLa cell impedance magnitude; single HeLa cell impedance measurement; single HeLa cell location; single cell electrical properties; single cell impedance analysis; three pillar microstructure; three pillar structure; time 1 hour to 19 hour; voltage 0.7 V; Electric fields; Electrodes; Equivalent circuits; Impedance; Impedance measurement; Integrated circuit modeling; Microstructure; MEMS (Micro-Electro-Mechanical Systems); PBS (Phosphate Buffered Saline); cell impedance; single cell analysis;
Conference_Titel :
Orange Technologies (ICOT), 2013 International Conference on
Conference_Location :
Tainan
Print_ISBN :
978-1-4673-5934-4
DOI :
10.1109/ICOT.2013.6521200