Efficiency of cellular delivery of antisense peptide nucleic acid by electroporation depends on charge and electroporation geometry.

Oligonucleotides Pub Date : 2011-02-01 Epub Date: 2011-01-14 DOI:10.1089/oli.2010.0266
Mette Joergensen, Birgit Agerholm-Larsen, Peter E Nielsen, Julie Gehl
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引用次数: 25

Abstract

Electroporation is potentially a very powerful technique for both in vitro cellular and in vivo drug delivery, particularly relating to oligonucleotides and their analogs for genetic therapy. Using a sensitive and quantitative HeLa cell luciferase RNA interference mRNA splice correction assay with a functional luciferase readout, we demonstrate that parameters such as peptide nucleic acid (PNA) charge and the method of electroporation have dramatic influence on the efficiency of productive delivery. In a suspended cell electroporation system (cuvettes), a positively charged PNA (+8) was most efficiently transferred, whereas charge neutral PNA was more effective in a microtiter plate electrotransfer system for monolayer cells. Surprisingly, a negatively charged (-23) PNA did not show appreciable activity in either system. Findings from the functional assay were corroborated by pulse parameter variations, polymerase chain reaction, and confocal microscopy. In conclusion, we have found that the charge of PNA and electroporation system combination greatly influences the transfer efficiency, thereby illustrating the complexity of the electroporation mechanism.

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细胞电穿孔传递反义肽核酸的效率取决于电荷和电穿孔几何。
电穿孔是一种潜在的非常强大的体外细胞和体内药物递送技术,特别是与基因治疗的寡核苷酸及其类似物有关。利用一种具有荧光素酶功能读出的灵敏和定量的HeLa细胞荧光素酶RNA干扰mRNA剪接校正实验,我们证明了肽核酸(PNA)电荷和电穿孔方法等参数对生产递送的效率有显着影响。在悬浮细胞电穿孔系统(小皿)中,带正电的PNA(+8)最有效地转移,而带中性电的PNA在微滴板电转移系统中更有效地转移单层细胞。令人惊讶的是,带负电荷(-23)的PNA在两种系统中都没有表现出明显的活性。功能分析的结果被脉冲参数变化、聚合酶链反应和共聚焦显微镜证实。综上所述,我们发现PNA的电荷和电穿孔系统的组合对传递效率有很大的影响,从而说明了电穿孔机理的复杂性。
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Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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Research Progress of RNA Quadruplex. PEI-g-PEG-RGD/small interference RNA polyplex-mediated silencing of vascular endothelial growth factor receptor and its potential as an anti-angiogenic tumor therapeutic strategy. A sol-gel-based microfluidics system enhances the efficiency of RNA aptamer selection. Development of single-stranded DNA aptamers for specific Bisphenol a detection. Polyethylenimine/oligonucleotide polyplexes investigated by fluorescence resonance energy transfer and fluorescence anisotropy.
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