Thermal loading in flow-through electroporation microfluidic devices
journal contribution
posted on 2024-11-02, 12:47 authored by Blanca del Rosal RabesBlanca del Rosal Rabes, Chen Sun, Despina Loufakis, Chang Lu, Daniel JaqueThermal loading effects in flow-through electroporation microfluidic devices have been systematically investigated by using dye-based ratiometric luminescence thermometry. Fluorescence measurements have revealed the crucial role played by both the applied electric field and flow rate on the induced temperature increments at the electroporation sections of the devices. It has been found that Joule heating could raise the intra-channel temperature up to cytotoxic levels (>45 °C) only when conditions of low flow rates and high applied voltages are applied. Nevertheless, when flow rates and electric fields are set to those used in real electroporation experiments we have found that local heating is not larger than a few degrees, i.e. temperature is kept within the safe range (<32 °C). We also provide thermal images of electroporation devices from which the heat affected area can be elucidated. Experimental data have been found to be in excellent agreement with numerical simulations that have also revealed the presence of a non-homogeneous temperature distribution along the electroporation channel whose magnitude is critically dependent on both applied electric field and flow rate. Results included in this work will allow for full control over the electroporation conditions in flow-through microfluidic devices. © 2013 The Royal Society of Chemistry.
History
Journal
Lab on a ChipVolume
13Issue
15Start page
3119End page
3127Total pages
9Publisher
Royal Society of ChemistryPlace published
United KingdomLanguage
EnglishCopyright
This journal is The Royal Society of Chemistry 2013Former Identifier
2006098560Esploro creation date
2020-09-08Usage metrics
Categories
Keywords
Licence
Exports
RefWorksRefWorks
BibTeXBibTeX
Ref. managerRef. manager
EndnoteEndnote
DataCiteDataCite
NLMNLM
DCDC