Joergensen Mette, Agerholm-Larsen Birgit, Nielsen Peter E, Gehl Julie
Department of Oncology, Copenhagen University Hospital Herlev, Herlev, Denmark.
Oligonucleotides. 2011 Feb;21(1):29-37. doi: 10.1089/oli.2010.0266. Epub 2011 Jan 14.
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.
电穿孔对于体外细胞和体内药物递送而言,可能是一种非常强大的技术,尤其适用于与基因治疗相关的寡核苷酸及其类似物。通过使用一种灵敏且定量的HeLa细胞荧光素酶RNA干扰mRNA剪接校正检测方法,并以功能性荧光素酶作为读数,我们证明了诸如肽核酸(PNA)电荷和电穿孔方法等参数对有效递送效率有显著影响。在悬浮细胞电穿孔系统(比色皿)中,带正电荷的PNA(+8)转移效率最高,而电荷中性的PNA在用于单层细胞的微孔板电转系统中更有效。令人惊讶的是,带负电荷(-23)的PNA在这两种系统中均未表现出明显活性。功能检测的结果通过脉冲参数变化、聚合酶链反应和共聚焦显微镜得到了证实。总之,我们发现PNA电荷与电穿孔系统的组合极大地影响了转移效率,从而说明了电穿孔机制的复杂性。