Publications

Biophysical phenotyping of cells via impedance spectroscopy in parallel cyclic deformability channels

Abstract

This paper describes a new microfluidic biosensor with capabilities of studying single cell biophysical properties. The chip contains four parallel sensing channels, where each channel includes two constriction regions separated by a relaxation region. All channels share a pair of electrodes to record the electrical impedance. Single cell impedance magnitudes and phases at different frequencies were obtained. The deformation and transition time information of cells passing through two sequential constriction regions were gained from the time points on impedance magnitude variations. Constriction channels separated by relaxation regions have been proven to improve the sensitivity of distinguishing single cells. The relaxation region between two sequential constriction channels provides extra time stamps that can be identified in the impedance plots. The new chip allows simultaneous measurement of the …

Date
2019
Authors
Xiang Ren, Parham Ghassemi, Jeannine S Strobl, Masoud Agah
Journal
Biomicrofluidics
Volume
13
Issue
4
Publisher
AIP Publishing