Broadband Dielectric Spectroscopy of Cell Cultures

Broadband dielectric spectroscopy measurements of biological materials within RF/microwave range can reveal cellular information, which is of important value in biological and medical researches. Here, we present a platform that combines a miniaturized coplanar waveguide (CPW) transmission line (TL)...

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Published inIEEE transactions on microwave theory and techniques Vol. 66; no. 12; pp. 5750 - 5759
Main Authors Bao, Xiue, Ocket, Ilja, Bao, Juncheng, Doijen, Jordi, Zheng, Ju, Kil, Dries, Liu, Zhuangzhuang, Puers, Bob, Schreurs, Dominique, Nauwelaers, Bart
Format Journal Article
LanguageEnglish
Published New York IEEE 01.12.2018
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN0018-9480
1557-9670
DOI10.1109/TMTT.2018.2873395

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Abstract Broadband dielectric spectroscopy measurements of biological materials within RF/microwave range can reveal cellular information, which is of important value in biological and medical researches. Here, we present a platform that combines a miniaturized coplanar waveguide (CPW) transmission line (TL) sensor and a special CPW-fed interdigitated capacitor (IDC), which allows us to measure the complex permittivity of cell cultures from 300 kHz to 50 GHz. The CPW-TL and CPW-IDC sensors are integrated with an SU-8 microfluidic channel, enabling measurements of microliter or even nanoliter volumes of liquids and suspensions. Due to the accurate alignment of the SU-8 polymer and the reliable liftoff fabrication procedure, we are able to minimize the measurement errors caused by the sensors' dimension tolerance. To ensure accurate complex permittivity extraction of the tested material, related calibrations and deembedding processes are explained. With the measurement of deionized water as a validation, the platform is used to measure the complex permittivity of both a yeast cell culture and a mammalian cell culture. We elaborate on the interesting findings and discuss future possibilities.
AbstractList Broadband dielectric spectroscopy measurements of biological materials within RF/microwave range can reveal cellular information, which is of important value in biological and medical researches. Here, we present a platform that combines a miniaturized coplanar waveguide (CPW) transmission line (TL) sensor and a special CPW-fed interdigitated capacitor (IDC), which allows us to measure the complex permittivity of cell cultures from 300 kHz to 50 GHz. The CPW-TL and CPW-IDC sensors are integrated with an SU-8 microfluidic channel, enabling measurements of microliter or even nanoliter volumes of liquids and suspensions. Due to the accurate alignment of the SU-8 polymer and the reliable liftoff fabrication procedure, we are able to minimize the measurement errors caused by the sensors' dimension tolerance. To ensure accurate complex permittivity extraction of the tested material, related calibrations and deembedding processes are explained. With the measurement of deionized water as a validation, the platform is used to measure the complex permittivity of both a yeast cell culture and a mammalian cell culture. We elaborate on the interesting findings and discuss future possibilities.
Author Puers, Bob
Kil, Dries
Schreurs, Dominique
Liu, Zhuangzhuang
Doijen, Jordi
Bao, Xiue
Ocket, Ilja
Zheng, Ju
Bao, Juncheng
Nauwelaers, Bart
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Snippet Broadband dielectric spectroscopy measurements of biological materials within RF/microwave range can reveal cellular information, which is of important value...
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SubjectTerms Biological materials
Biotechnology
Broadband
Broadband communication
Cell culture
Complex permittivity
Coplanar waveguides
Deionization
dielectric spectroscopy
Dielectrics
Dispersion
mammalian cells
Medical research
Microfluidics
Permittivity
Permittivity measurement
RF/microwave measurement
Sensors
Spectrum analysis
Transmission lines
Yeast
yeast cells
Title Broadband Dielectric Spectroscopy of Cell Cultures
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