We investigated the effects of a single 60 nanosecond pulsed electric field (nsPEF) of low (15 kV/cm) and high (60 kV/cm) field strengths on cellular morphology and membrane elasticity in Jurkat cells using fluorescent microscopy and atomic force microscopy (AFM). We performed force displacement measurements on cells using AFM and calculated the Young\u27s modulus for membrane elasticity. Differential effects were observed depending upon pulsing conditions. We found that a single nsPEF of low field strength did not induce any apparent cytoskeletal breakdown and had minor morphological changes. Interestingly, force measurements and calculation of Young\u27s modulus showed a significant decrease in membrane elasticity. A single nsPEF of high ...
Electric field effects on dynamics and function of biological systems depend on the cell membrane ca...
International audienceAtomic Force Microscopy (AFM) is more and more used in life science. Its abili...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
We investigated the effects of a single 60 nanosecond pulsed electric field (nsPEF) of low (15 kV/cm...
Disruption of the actin cytoskeleton structures was reported as one of the characteristic effects of...
We investigated the effects of nanosecond pulsed electric fields (nsPEF) on three human cell lines a...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
This study reports that the surface charge density changes in Jurkat cells with the application of s...
AbstractElectropermeabilization is a physical method that uses electric field pulses to deliver mole...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and th...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
Electric field effects on dynamics and function of biological systems depend on the cell membrane ca...
International audienceAtomic Force Microscopy (AFM) is more and more used in life science. Its abili...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...
We investigated the effects of a single 60 nanosecond pulsed electric field (nsPEF) of low (15 kV/cm...
Disruption of the actin cytoskeleton structures was reported as one of the characteristic effects of...
We investigated the effects of nanosecond pulsed electric fields (nsPEF) on three human cell lines a...
Nanosecond pulsed electric field induced biological effects have been a focus of research interests ...
This study reports that the surface charge density changes in Jurkat cells with the application of s...
AbstractElectropermeabilization is a physical method that uses electric field pulses to deliver mole...
The continuing effort to manipulate cell-signaling pathways for therapeutic benefit has lead to the ...
Electrical models for biological cells predict that reducing the duration of applied electrical puls...
The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and th...
It is hypothesized that high frequency components of nanosecond pulsed electric fields (nsPEFs), det...
The change in the membrane potential of Jurkat cells in response to nanosecond pulsed electric field...
AbstractA simple electrical model for living cells predicts an increasing probability for electric f...
Electric field effects on dynamics and function of biological systems depend on the cell membrane ca...
International audienceAtomic Force Microscopy (AFM) is more and more used in life science. Its abili...
AbstractThe change in the membrane potential of Jurkat cells in response to nanosecond pulsed electr...