Betal Soutik, Shrestha Binita, Dutta Moumita, Cotica Luiz F, Khachatryan Edward, Nash Kelly, Tang Liang, Bhalla Amar S, Guo Ruyan
Department of Electrical and Computer Engineering, University of Texas at San Antonio, San Antonio, TX 78249, USA.
Department of Biomedical Engineering, University of Texas at San Antonio, San Antonio, TX 78249, USA.
Sci Rep. 2016 Aug 26;6:32019. doi: 10.1038/srep32019.
A magnetically controlled elastically driven electroporation phenomenon, or magneto-elasto-electroporation (MEEP), is discovered while studying the interactions between core-shell magnetoelectric nanoparticles (CSMEN) and biological cells in the presence of an a.c. magnetic field. In this paper we report the effect of MEEP observed via a series of in-vitro experiments using core (CoFe2O4)-shell (BaTiO3) structured magnetoelectric nanoparticles and human epithelial cells (HEP2). The cell electroporation phenomenon and its correlation with the magnetic field modulated CSMEN are described in detail. The potential application of CSMEN in electroporation is confirmed by analyzing crystallographic phases, multiferroic properties of the fabricated CSMEN, influences of d.c. and a.c. magnetic fields on the CSMEN and cytotoxicity tests. The mathematical formalism to quantitatively describe the phenomena is also reported. The reported findings provide insights into the underlying MEEP mechanism and demonstrate the utility of CSMEN as an electric pulse-generating nano-probe in electroporation experiments with a potential application toward accurate and efficient targeted cell permeation.
在研究核壳磁电纳米颗粒(CSMEN)与生物细胞在交变磁场存在下的相互作用时,发现了一种磁控弹性驱动的电穿孔现象,即磁弹电穿孔(MEEP)。在本文中,我们报告了通过一系列体外实验观察到的MEEP效应,这些实验使用了核(CoFe2O4)-壳(BaTiO3)结构的磁电纳米颗粒和人上皮细胞(HEP2)。详细描述了细胞电穿孔现象及其与磁场调制的CSMEN的相关性。通过分析所制备CSMEN的晶体相、多铁性特性、直流和交变磁场对CSMEN的影响以及细胞毒性测试,证实了CSMEN在电穿孔中的潜在应用。还报告了定量描述这些现象的数学形式。所报告的研究结果为潜在的MEEP机制提供了见解,并证明了CSMEN作为电脉冲产生纳米探针在电穿孔实验中的实用性,具有精确高效靶向细胞渗透的潜在应用前景。