Calculations of Cell Transmembrane Voltage Induced by Time-Varying Magnetic Fields

被引:8
作者
Hu, Qin [1 ]
Joshi, Ravi P. [2 ]
Miklavcic, Damijan [3 ]
机构
[1] Eastern Michigan Univ, Sch Engn, Ypsilanti, MI 48197 USA
[2] Texas Tech Univ, Dept Elect & Comp Engn, Lubbock, TX 79409 USA
[3] Univ Ljubljana, Fac Elect Engn, Lab Biocybernet, Ljubljana 1000, Slovenia
关键词
Biomembranes; Electric potential; Magnetic stimulation; Nanobioscience; Electrodes; Magnetic fields; Drug delivery; Cellular poration; magnetic stimulation; modeling; time-varying fields; transmembrane potential; GENE ELECTROTRANSFER; IN-VITRO; ELECTROPORATION; STIMULATION; ELECTROCHEMOTHERAPY; ULTRASHORT; MITOCHONDRIA; SIMULATION; PRINCIPLES; PULSES;
D O I
10.1109/TPS.2020.2975421
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Electric pulses can create pores and/or render cell membranes permeable, and this effect has been studied for decades. Applications include cell membrane permeabilization for gene electrotransfer, drug delivery, and related electrochemotherapy, as well as tissue ablation. Here, we probe the use of time-varying magnetic fields to modulate the transmembrane voltage (TMV) across cell membranes through numerical simulations. This could be a contactless, noninvasive technique. Results show that the induced TMV values exceeding the 1 V threshold for electroporation could be achieved for short duration pulsing with fast rise and fall times. The strongest response is then predicted to occur when the lateral distance between a cell and the center of a current carrying coil equals the coil radius. The induced TMV is shown to peak when the gradient in the magnetic potential is the largest. However, with the more realistic but longer microsecond pulse stimulation systems, the induced TMV is much smaller. Hence, developing shorter pulses or fast rise times is critical for achieving membrane poration based on time-varying magnetic fields. Other effects could also focus on the use of nanoparticles (including magnetic materials) for possible heating for synergistic enhancements of transport through tumor cell membranes.
引用
收藏
页码:1088 / 1095
页数:8
相关论文
共 50 条
  • [41] In vitro evaluation of teratogenic effects by time-varying MR gradient fields on fetal human fibroblasts
    Rodegerdts, EA
    Grönewäller, EF
    Kehlbach, R
    Roth, P
    Wiskirchen, J
    Gebert, R
    Claussen, CD
    Duda, SH
    JOURNAL OF MAGNETIC RESONANCE IMAGING, 2000, 12 (01) : 150 - 156
  • [42] Scaling properties of nonstationary wind fields based on time-varying mean wind speed models
    Cai, Kang
    Huang, Mingfeng
    Wang, Jiayao
    Dong, You
    Ni, Yi-Qing
    Chan, Pak-wai
    PHYSICS OF FLUIDS, 2025, 37 (04)
  • [43] Non-conductive and miniature fiber-optic imaging system for real-time detection of neuronal activity in time-varying electromagnetic fields
    Saito, Atsushi
    Takahashi, Masayuki
    Jimbo, Yasuhiko
    Nakasono, Satoshi
    BIOSENSORS & BIOELECTRONICS, 2017, 87 : 786 - 793
  • [44] Currents Induced in the Lap-Type Joints of Superconducting Cable-in-Conduit Conductors Exposed to the Time-Varying Magnetic Field
    Astrov, Mikhail S.
    Egorov, Sergey A.
    Rodin, Igor Yu.
    Zapretilina, Elena R.
    Fedotova, Svetlana B.
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2012, 22 (03)
  • [45] Isosurface Extraction and View-Dependent Filtering from Time-Varying Fields Using Persistent Time-Octree (PTOT)
    Wang, Cong
    Chiang, Yi-Jen
    IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS, 2009, 15 (06) : 1367 - 1374
  • [46] Numerical method to depict the time-varying Lorentz force field under harmonic magnetic field
    Bai, YunFeng
    MATERIALS TODAY COMMUNICATIONS, 2023, 35
  • [47] Simultaneous exposure to MRI-related static and low-frequency movement-induced time-varying magnetic fields affects neurocognitive performance: A double-blind randomized crossover study
    van Nierop, Lotte E.
    Slottje, Pauline
    van Zandvoort, Martine
    Kromhout, Hans
    MAGNETIC RESONANCE IN MEDICINE, 2015, 74 (03) : 840 - 849
  • [48] Time-Varying Risk Assessment of Wind-Induced Disaster for Sea-Crossing Bridge
    Guo, Jian
    Wang, Zheng
    TRANSPORTATION RESEARCH RECORD, 2024,
  • [49] Time-varying pressure distribution on solar updraft tower (an axisymmetric structure) induced by a translating downburst
    Zhou, Xinping
    Qin, Peng
    Liu, Chi
    Zhao, Gaoyu
    SOLAR UPDRAFT TOWER POWER TECHNOLOGY, 2013, 283 : 47 - 54
  • [50] Cell death induced by AC magnetic fields and magnetic nanoparticles: Current state and perspectives
    Goya, Gerardo F.
    Asin, Laura
    Ibarra, M. Ricardo
    INTERNATIONAL JOURNAL OF HYPERTHERMIA, 2013, 29 (08) : 810 - 818