In contrast to the delicate 3D electrodes in the literature, a simple flow-through device is proposed here for continuous and massive lysis of cells using electricity. The device is essentially a rectangular microchannel with a planar electrode array built on its bottom wall, actuated by alternating current (AC) voltages between neighboring electrodes, and can be incorporated easily into other biomedical systems. Human whole blood diluted 10 times with phosphate-buffered saline (about 6 × 108 cells per mL) was pumped through the device, and the cells were completely lysed within 7 s after the application of a 20 V peak-to-peak voltage at 1 MHz, up to 400 μL/hr. Electric field and Maxwell stress were calculated for assessing electrical lysis...
Microfluidics based continuous cell electroporation is an appealing approach for high-throughput cel...
The emergence of microfluidic techniques provide an unprecedented opportunity for peering into molec...
Accurate analysis at the single-cell level has become a highly attractive tool for investigating cel...
Analysis of electric fields generated inside the microchannels of a microfluidic device for electric...
Electroporation (EP) of biological cells leads to the exchange of materials through the permeabilize...
We demonstrate a micro-electroporation device for cell lysis prior to subcellular analysis. Simple c...
The ability to strategically induce or suppress cell lysis is critical for many cellular-level diagn...
Analysis of electric fields generated inside the microchannels of a microfluidic device for electric...
A primary objective of modern biology is to understand the molecular mechanisms which underlie cellu...
Electroporation is a powerful transfection technique that creates transient openings in the cell mem...
[[abstract]]Microfabricated devices for cell lysis have demonstrated many advantages over convention...
Electroporation is a widely used method for increasing the permeability of the cellular membrane. Im...
Microfluidics based continuous cell electroporation is an appealing approach for high-throughput cel...
Continuous cell electroporation is an appealing non-viral approach for genetically transfecting a la...
Crossing the plasma cellular membrane for loading of exogenous substances or accessing the intracell...
Microfluidics based continuous cell electroporation is an appealing approach for high-throughput cel...
The emergence of microfluidic techniques provide an unprecedented opportunity for peering into molec...
Accurate analysis at the single-cell level has become a highly attractive tool for investigating cel...
Analysis of electric fields generated inside the microchannels of a microfluidic device for electric...
Electroporation (EP) of biological cells leads to the exchange of materials through the permeabilize...
We demonstrate a micro-electroporation device for cell lysis prior to subcellular analysis. Simple c...
The ability to strategically induce or suppress cell lysis is critical for many cellular-level diagn...
Analysis of electric fields generated inside the microchannels of a microfluidic device for electric...
A primary objective of modern biology is to understand the molecular mechanisms which underlie cellu...
Electroporation is a powerful transfection technique that creates transient openings in the cell mem...
[[abstract]]Microfabricated devices for cell lysis have demonstrated many advantages over convention...
Electroporation is a widely used method for increasing the permeability of the cellular membrane. Im...
Microfluidics based continuous cell electroporation is an appealing approach for high-throughput cel...
Continuous cell electroporation is an appealing non-viral approach for genetically transfecting a la...
Crossing the plasma cellular membrane for loading of exogenous substances or accessing the intracell...
Microfluidics based continuous cell electroporation is an appealing approach for high-throughput cel...
The emergence of microfluidic techniques provide an unprecedented opportunity for peering into molec...
Accurate analysis at the single-cell level has become a highly attractive tool for investigating cel...