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Dielectric passivation layer as a substratum on localized single-cell electroporation
Journal article   Peer reviewed

Dielectric passivation layer as a substratum on localized single-cell electroporation

Tuhin Subhra Santra, Chih-Wei Chen, Hwan-You Chang and Fan-Gang Tseng
RSC Advances, Vol.6(13), pp.10979-10986
2016

Abstract

Single-cell electroporation is a powerful technique to understand cellular behavior with heterogeneity, which might be impossible based on bulk measurements of millions of cells together. In this study, a dielectric passivation layer was deposited on top of an indium-tin oxide micro-electrode-based transparent chip surface using a plasma enhanced chemical vapour deposition technique. We theoretically and experimentally investigated the key effects of the dielectric passivation layer on localized single-cell electroporation for different cancer cells, which were randomly distributed with a high density throughout the chip surface as a monolayer. The passivation layer not only prevented the conventional or bulk electroporation with bubble and ion generation, but also provide an intense electric field in-between electrode gap for localized single-cell electroporation with high cell viability. Thus, devices with dielectric passivation layers are potentially applicable for single-cell studies.

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