Issue 19, 2015

A microchip integrating cell array positioning with in situ single-cell impedance measurement

Abstract

This paper presents a novel microarray chip integrating cell positioning with in situ, real-time and long-time impedance measurement on a single cell. The microchip integrates a plurality of quadrupole-electrode units (termed positioning electrodes) patterned into an array with pairs of planar electrodes (termed measuring electrodes) located at the centers of each quadrupole-electrode unit. The positioning electrodes are utilized to trap and position living cells onto the measuring electrodes based on negative dielectrophoresis (nDEP), while the measuring electrodes are used to measure impedances of the trapped single cells. Each measuring electrode has a small footprint area of 7 × 7 μm2 to ensure inhabiting only one single cell on it. However, the electrode with a small surface area has a low double-layer capacitance when it is immersed in a liquid solution, thus generating a large double-layer impedance, which reduces the sensitivity for impedance measurement on the single cell. To enlarge the effective surface areas of the measuring electrodes, a novel surface-modification process is proposed to controllably construct gold nanostructures on the surfaces of the measuring electrodes while the positioning electrodes are unstained. The double layer capacitances of the modified electrodes are increased by about one order after surface-modification. The developed microchip is used to monitor the adhering behavior of a single HeLa cell by measuring its impedance spectra in real time. The measured impedance is analyzed and used to extract cellular electrical parameters, which demonstrated that the cell compresses the electrical double layer in the process of adherence and adheres onto the measuring electrodes after 4–5 hours.

Graphical abstract: A microchip integrating cell array positioning with in situ single-cell impedance measurement

Article information

Article type
Paper
Submitted
15 Jun 2015
Accepted
01 Aug 2015
First published
03 Aug 2015

Analyst, 2015,140, 6571-6578

A microchip integrating cell array positioning with in situ single-cell impedance measurement

X. Guo, R. Zhu and X. Zong, Analyst, 2015, 140, 6571 DOI: 10.1039/C5AN01193K

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