Literature DB >> 23532338

Nanosecond pulsed electric field thresholds for nanopore formation in neural cells.

Caleb C Roth1, Gleb P Tolstykh, Jason A Payne, Marjorie A Kuipers, Gary L Thompson, Mauris N DeSilva, Bennett L Ibey.   

Abstract

The persistent influx of ions through nanopores created upon cellular exposure to nanosecond pulse electric fields (nsPEF) could be used to modulate neuronal function. One ion, calcium (Ca(2+)), is important to action potential firing and regulates many ion channels. However, uncontrolled hyper-excitability of neurons leads to Ca(2+) overload and neurodegeneration. Thus, to prevent unintended consequences of nsPEF-induced neural stimulation, knowledge of optimum exposure parameters is required. We determined the relationship between nsPEF exposure parameters (pulse width and amplitude) and nanopore formation in two cell types: rodent neuroblastoma (NG108) and mouse primary hippocampal neurons (PHN). We identified thresholds for nanoporation using Annexin V and FM1-43, to detect changes in membrane asymmetry, and through Ca(2+) influx using Calcium Green. The ED50 for a single 600 ns pulse, necessary to cause uptake of extracellular Ca(2+), was 1.76  kV/cm for NG108 and 0.84  kV/cm for PHN. At 16.2  kV/cm, the ED50 for pulse width was 95 ns for both cell lines. Cadmium, a nonspecific Ca(2+) channel blocker, failed to prevent Ca(2+) uptake suggesting that observed influx is likely due to nanoporation. These data demonstrate that moderate amplitude single nsPEF exposures result in rapid Ca(2+) influx that may be capable of controllably modulating neurological function.

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Year:  2013        PMID: 23532338     DOI: 10.1117/1.JBO.18.3.035005

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  18 in total

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Journal:  Ann Med       Date:  2022-12       Impact factor: 5.348

5.  Neuronal excitation and permeabilization by 200-ns pulsed electric field: An optical membrane potential study with FluoVolt dye.

Authors:  Andrei G Pakhomov; Iurii Semenov; Maura Casciola; Shu Xiao
Journal:  Biochim Biophys Acta Biomembr       Date:  2017-04-18       Impact factor: 3.747

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7.  5 ns electric pulses induce Ca2+-dependent exocytotic release of catecholamine from adrenal chromaffin cells.

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Journal:  Bioelectrochemistry       Date:  2021-04-27       Impact factor: 5.760

8.  Design, characterization and experimental validation of a compact, flexible pulsed power architecture for ex vivo platelet activation.

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9.  Optical Stimulation of Neurons.

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10.  Characterization of Pressure Transients Generated by Nanosecond Electrical Pulse (nsEP) Exposure.

Authors:  Caleb C Roth; Ronald A Barnes; Bennett L Ibey; Hope T Beier; L Christopher Mimun; Saher M Maswadi; Mehdi Shadaram; Randolph D Glickman
Journal:  Sci Rep       Date:  2015-10-09       Impact factor: 4.379

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