We investigated the effects of nanosecond pulsed electric fields (nsPEF) on three human cell lines and demonstrated cell shrinkage, breakdown of the cytoskeleton, nuclear membrane and chromosomal telomere damage. There was a differential response between cell types coinciding with cell survival. Jurkat cells showed cytoskeleton, nuclear membrane and telomere damage that severely impacted cell survival compared to two adherent cell lines. Interestingly, disruption of the actin cytoskeleton in adherent cells prior to nsPEF exposure significantly reduced cell survival. We conclude that nsPEF applications are able to induce damage to the cytoskeleton and nuclear membrane. Telomere sequences, regions that tether and stabilize DNA to the nuclear ...
International audienceHigh powered, nanosecond duration pulsed electricfields (nsPEF) have been prop...
Pulsed power treatment has been used to induce regulated cell death (RCD) in cells or ablate tumors ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
We investigated the effects of nanosecond pulsed electric fields (nsPEF) on three human cell lines a...
High-amplitude electric pulses of nanosecond duration, also known as nanosecond pulsed electric fiel...
Pulse power technology using nanosecond pulsed electric fields (nsPEFs) offers a new stimulus to mod...
Disruption of the actin cytoskeleton structures was reported as one of the characteristic effects of...
We investigated the effects of a single 60 nanosecond pulsed electric field (nsPEF) of low (15 kV/cm...
High-amplitude electric pulses of nanosecond duration, also known as nanosecond pulsed electric fiel...
We investigated the effects of nanosecond pulse electric fields (nsPEFs) on Jurkat and PANC1 cells, ...
Intense nanosecond pulsed electric fields (nsPEFs) interact with cellular membranes and intracellula...
International audienceHigh powered, nanosecond duration, pulsed electric fields (nsPEF) cause cell d...
The evolution of pulse power technology from high power physics to biology and medicine places nanos...
International audienceHigh powered, nanosecond duration pulsed electricfields (nsPEF) have been prop...
Pulsed power treatment has been used to induce regulated cell death (RCD) in cells or ablate tumors ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
We investigated the effects of nanosecond pulsed electric fields (nsPEF) on three human cell lines a...
High-amplitude electric pulses of nanosecond duration, also known as nanosecond pulsed electric fiel...
Pulse power technology using nanosecond pulsed electric fields (nsPEFs) offers a new stimulus to mod...
Disruption of the actin cytoskeleton structures was reported as one of the characteristic effects of...
We investigated the effects of a single 60 nanosecond pulsed electric field (nsPEF) of low (15 kV/cm...
High-amplitude electric pulses of nanosecond duration, also known as nanosecond pulsed electric fiel...
We investigated the effects of nanosecond pulse electric fields (nsPEFs) on Jurkat and PANC1 cells, ...
Intense nanosecond pulsed electric fields (nsPEFs) interact with cellular membranes and intracellula...
International audienceHigh powered, nanosecond duration, pulsed electric fields (nsPEF) cause cell d...
The evolution of pulse power technology from high power physics to biology and medicine places nanos...
International audienceHigh powered, nanosecond duration pulsed electricfields (nsPEF) have been prop...
Pulsed power treatment has been used to induce regulated cell death (RCD) in cells or ablate tumors ...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...