Label-free single-cell counting and characterization in the GHz-range

Author:

Gwozdz Paul V.1,Harberts Jann1,Zierold Robert1,Blick Robert H.12

Affiliation:

1. Center for Hybrid Nanostructures (CHyN), Universität Hamburg , DESY Campus Bldg. 600, Luruper Chaussee 149 , 22761 Hamburg , Germany

2. Materials Science and Engineering , University of Wisconsin-Madison , 1550 University Avenue , Madison , WI , USA

Abstract

Abstract We demonstrate operation of a micropore based flow cytometer in the radio-frequency range. Apart from simply counting micron sized particles, such as cells, with close to nano-second resolution this counter offers the additional benefit of delivering insight into the intracellular environment. Such non-invasive screening of the cell’s interior based on analysing amplitude and phase of the signal is helpful in characterizing the biological activity of cells. In detail we are using heterodyne mixing to demodulate the temporal impedance changes, which are induced by cells translocating through a micropore embedded in a radio-frequency circuit. This allows us to measure every amplitude and phase modulation induced by a translocation event. Herein, we compare the Jurkat cells (human T lymphocytes) recordings with a control group of polystyrene beads. As the cells are measured on a single cell level, the variations on the measured amplitude and phase signals are used, herein, to sense morphological cell changes in real time.

Funder

Deutsche Forschungs-gemeinschaft

Joachim-Herz-Stiftung

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering

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