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Review

Cellular electrical impedance spectroscopy: an emerging technology of microscale biosensors

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Pages 767-779 | Published online: 09 Jan 2014
 

Abstract

Electrical impedance spectroscopy, owing to its label-free, noninvasive and easy miniaturization nature, has shown great potential in cellular biochemical sensing and cell-based diagnostics. In this article, cutting-edge technologies of electrical impedance spectroscopy are reviewed according to different sensing mechanisms, including monitoring of ion release from live cells, utilization of nonconductive cellular membranes, and detection of the spatial distribution of cells. The most successful applications where the electrical impedance sensors have been proven effective are introduced, including investigation of anticancer drug therapies, wound healing, cytotoxicity evaluation and measurement of blood rheological behavior. Furthermore, the research advances that yield enhanced sensitivities and functionalities are introduced. Finally, the commercialization challenges and the critical barriers that hinder the sustaining development of cellular electrical impedance spectroscopy are discussed.

Financial & competing interests disclosure

The authors acknowledge the support from National Science Foundation CAREER Award (DBI-0954013), and Mathematical Bioscience Institute at the Ohio State University. The student support is kindly provided by China Scholarship Council. The authors have no other relevant affiliations or financial involvement with any organization or entity with a financial interest in or financial conflict with the subject matter or materials discussed in the manuscript apart from those disclosed.

No writing assistance was utilized in the production of this manuscript.

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