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纳米颗粒辅助电穿孔用于膜通透化和基因电转染的疗效有限。

Limited Efficacy of Nanoparticle-Assisted Electroporation for Membrane Permeabilization and Gene Electrotransfer.

作者信息

Polajžer Tamara, Kranjc Matej, Kralj Slavko, Caf Maja, Romih Rok, Hudoklin Samo, Rocca Federica, Miklavčič Damijan

机构信息

Faculty of Electrical Engineering, University of Ljubljana, Tržaška 25, SI-1000 Ljubljana, Slovenia.

Department for Materials Synthesis, Jožef Stefan Institute, Jamova cesta 39, SI-1000 Ljubljana, Slovenia.

出版信息

Pharmaceutics. 2025 Jul 25;17(8):964. doi: 10.3390/pharmaceutics17080964.

Abstract

: Nanoparticles (NPs) were previously explored as enhancers in electroporation due to their potential to locally amplify electric fields near cell membranes, with gold nanoparticles (AuNPs) in particular showing promise in improving membrane permeability and gene electrotransfer (GET). In this study, we systematically investigated the influence of NP properties-including size, shape, surface functionalization, and material-on electroporation efficacy. : A combined approach using theoretical modeling and experimental validation was employed, encompassing numerical simulations, membrane permeabilization assays, transmission electron microscopy, and GET efficiency measurements. : Numerical results revealed that the presence of NPs alters local electric field distributions, but the amplification is highly localized, regardless of NP conductivity or geometry. Experimentally, only two out of six tested NP types produced a statistically significant, yet modest, increase in membrane permeability at one electric field intensity. Similarly, GET improvement was observed with only one NP type, with no dependence on concentration or functionalization. : Overall, our findings demonstrate that NPs, under tested conditions, do not substantially enhance cell membrane permeability or GET efficacy. These conclusions are supported by both computational modeling and in vitro experiments.

摘要

由于纳米颗粒(NPs)具有在细胞膜附近局部增强电场的潜力,因此以前曾被用作电穿孔的增强剂,尤其是金纳米颗粒(AuNPs)在改善膜通透性和基因电转染(GET)方面显示出前景。在本研究中,我们系统地研究了NP特性(包括尺寸、形状、表面功能化和材料)对电穿孔效率的影响。采用了理论建模与实验验证相结合的方法,包括数值模拟、膜通透性测定、透射电子显微镜和GET效率测量。数值结果表明,NP的存在会改变局部电场分布,但无论NP的电导率或几何形状如何,这种增强都是高度局部化的。在实验中,六种测试的NP类型中只有两种在一种电场强度下使膜通透性有统计学意义但适度的增加。同样,仅在一种NP类型中观察到GET改善,且不依赖于浓度或功能化。总体而言,我们的研究结果表明,在测试条件下,NP并不能显著提高细胞膜通透性或GET效率。这些结论得到了计算建模和体外实验的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad72/12389653/c04852008232/pharmaceutics-17-00964-g001.jpg

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