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利用纳秒脉冲的兆赫兹脉冲串和金纳米颗粒增强电场以改善非病毒基因递送

Improving NonViral Gene Delivery Using MHz Bursts of Nanosecond Pulses and Gold Nanoparticles for Electric Field Amplification.

作者信息

Radzevičiūtė-Valčiukė Eivina, Gečaitė Jovita, Želvys Augustinas, Zinkevičienė Auksė, Žalnėravičius Rokas, Malyško-Ptašinskė Veronika, Nemeikaitė-Čenienė Aušra, Kašėta Vytautas, German Natalija, Novickij Jurij, Ramanavičienė Almira, Kulbacka Julita, Novickij Vitalij

机构信息

Department of Immunology, State Research Institute Centre for Innovative Medicine, 08406 Vilnius, Lithuania.

Faculty of Electronics, Vilnius Gediminas Technical University, 10223 Vilnius, Lithuania.

出版信息

Pharmaceutics. 2023 Apr 7;15(4):1178. doi: 10.3390/pharmaceutics15041178.

Abstract

Gene delivery by the pulsed electric field is a promising alternative technology for nonviral transfection; however, the application of short pulses (i.e., nanosecond) is extremely limited. In this work, we aimed to show the capability to improve gene delivery using MHz frequency bursts of nanosecond pulses and characterize the potential use of gold nanoparticles (AuNPs: 9, 13, 14, and 22 nm) in this context. We have used bursts of MHz pulses 3/5/7 kV/cm × 300 ns × 100 and compared the efficacy of the parametric protocols to conventional microsecond protocols (100 µs × 8, 1 Hz) separately and in combination with nanoparticles. Furthermore, the effects of pulses and AuNPs on the generation of reactive oxygen species (ROS) were analyzed. It was shown that gene delivery using microsecond protocols could be significantly improved with AuNPs; however, the efficacy is strongly dependent on the surface charge of AuNPs and their size. The capability of local field amplification using AuNPs was also confirmed by finite element method simulation. Finally, it was shown that AuNPs are not effective with nanosecond protocols. However, MHz protocols are still competitive in the context of gene delivery, resulting in low ROS generation, preserved viability, and easier procedure to trigger comparable efficacy.

摘要

通过脉冲电场进行基因递送是一种很有前景的非病毒转染替代技术;然而,短脉冲(即纳秒级)的应用极为有限。在这项工作中,我们旨在展示利用兆赫兹频率的纳秒脉冲串来改善基因递送的能力,并在此背景下表征金纳米颗粒(AuNP:9、13、14和22纳米)的潜在用途。我们使用了3/5/7 kV/cm×300 ns×100的兆赫兹脉冲串,并分别以及与纳米颗粒结合比较了参数方案与传统微秒方案(100 µs×8,1 Hz)的效果。此外,还分析了脉冲和金纳米颗粒对活性氧(ROS)生成的影响。结果表明,使用微秒方案时,金纳米颗粒可显著改善基因递送;然而,效果强烈依赖于金纳米颗粒的表面电荷及其尺寸。有限元方法模拟也证实了金纳米颗粒的局部场放大能力。最后,结果表明金纳米颗粒对纳秒方案无效。然而,在基因递送方面,兆赫兹方案仍然具有竞争力,可产生低水平的ROS、保持细胞活力,并且触发可比效果的操作更简便。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d86f/10146442/5102603f8242/pharmaceutics-15-01178-g001.jpg

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