Nanoelectroporation of biomembranes is an effect of high-voltage, nanosecond-duration electric pulses (nsEP). It occurs both in the plasma membrane and inside the cell, and nanoporated membranes are distinguished by ion-selective and potential-sensitive permeability. Here we report a novel phenomenon of bioeffects cancellation that puts nsEP cardinally apart from the conventional electroporation and electrostimulation by milli- and microsecond pulses. We compared the effects of 60- and 300-ns monopolar, nearly rectangular nsEP on intracellular Ca2+mobilization and cell survival with those of bipolar 60 + 60 and 300 + 300 ns pulses. For diverse endpoints, exposure conditions, pulse numbers (1-60), and amplitudes (15-60 kV/cm), the addition o...
The study was aimed at identifying endogenous proteins which assist or impede the permeabilized stat...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
Ca2+ activation and membrane electroporation by 10-ns and 4-ms electric pulses (nsEP and msEP) were ...
Nanoelectroporation of biomembranes is an effect of high-voltage, nanosecond-duration electric pulse...
Nanosecond bipolar pulse cancellation, a recently discovered Phenomenon, is modulation of the effect...
Reversing the pulse polarity, i.e., changing the electric field direction by 180°, inhibits electrop...
The present study compared electroporation efficiency of bipolar and unipolar nanosecond electric fi...
Electropermeabilization of cell membranes by micro- and nanosecond-duration stimuli has been studied...
At present, some of the most promising techniques for cell ablation, stimulation, and excitation are...
AbstractElectropermeabilization of cell membranes by micro- and nanosecond-duration stimuli has been...
A phenomenon of bipolar cancellation stands for the suppression of bioeffects of nanosecond electric...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
BackgroundNanosecond, megavolt-per-meter pulsed electric fields scramble membrane phospholipids, rel...
For this systematic review, 203 published reports on effects of electroporation using nanosecond hig...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
The study was aimed at identifying endogenous proteins which assist or impede the permeabilized stat...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
Ca2+ activation and membrane electroporation by 10-ns and 4-ms electric pulses (nsEP and msEP) were ...
Nanoelectroporation of biomembranes is an effect of high-voltage, nanosecond-duration electric pulse...
Nanosecond bipolar pulse cancellation, a recently discovered Phenomenon, is modulation of the effect...
Reversing the pulse polarity, i.e., changing the electric field direction by 180°, inhibits electrop...
The present study compared electroporation efficiency of bipolar and unipolar nanosecond electric fi...
Electropermeabilization of cell membranes by micro- and nanosecond-duration stimuli has been studied...
At present, some of the most promising techniques for cell ablation, stimulation, and excitation are...
AbstractElectropermeabilization of cell membranes by micro- and nanosecond-duration stimuli has been...
A phenomenon of bipolar cancellation stands for the suppression of bioeffects of nanosecond electric...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
BackgroundNanosecond, megavolt-per-meter pulsed electric fields scramble membrane phospholipids, rel...
For this systematic review, 203 published reports on effects of electroporation using nanosecond hig...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
The study was aimed at identifying endogenous proteins which assist or impede the permeabilized stat...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
Ca2+ activation and membrane electroporation by 10-ns and 4-ms electric pulses (nsEP and msEP) were ...