Duvshani-Eshet M, Baruch L, Kesselman E, Shimoni E, Machluf M
The Faculty of Biotechnology and Food Engineering, The Technion - Israel institute of Technology, Haifa.
Gene Ther. 2006 Jan;13(2):163-72. doi: 10.1038/sj.gt.3302642.
Therapeutic ultrasound (TUS) has the potential of becoming a powerful nonviral method for the delivery of genes into cells and tissues. Understanding the mechanism by which TUS delivers genes, its bioeffects on cells and the kinetic of gene entrances to the nucleus can improve transfection efficiency and allow better control of this modality when bringing it to clinical settings. In the present study, direct evidence for the role and possible mechanism of TUS (with or without Optison) in the in vitro gene-delivery process are presented. Appling a 1 MHz TUS, at 2 W/cm(2), 30%DC for 30 min was found to achieve the highest transfection level and efficiency while maintaining high cell viability (>80%). Adding Optison further increase transfection level and efficiency by 1.5 to three-fold. Confocal microscopy studies indicate that long-term TUS application localizes the DNA in cell and nucleus regardless of Optison addition. Thus, TUS significantly affects transfection efficiency and protein kinetic expression. Using innovative direct microscopy approaches: atomic force microscopy, we demonstrate that TUS exerts bioeffects, which differ from the ones obtained when Optison is used together with TUS. Our data suggest that TUS alone affect the cell membrane in a different mechanism than when Optison is used.
治疗性超声(TUS)有潜力成为一种将基因导入细胞和组织的强大非病毒方法。了解TUS传递基因的机制、其对细胞的生物效应以及基因进入细胞核的动力学,可提高转染效率,并在将这种方法应用于临床时实现更好的控制。在本研究中,给出了TUS(有无Optison)在体外基因传递过程中的作用及可能机制的直接证据。发现应用1 MHz的TUS,功率为2 W/cm²,占空比30%,作用30分钟,在保持高细胞活力(>80%)的同时可实现最高的转染水平和效率。添加Optison可使转染水平和效率进一步提高1.5至三倍。共聚焦显微镜研究表明,无论是否添加Optison,长期应用TUS都会使DNA定位于细胞和细胞核中。因此,TUS显著影响转染效率和蛋白质动力学表达。使用创新的直接显微镜方法:原子力显微镜,我们证明TUS产生的生物效应与Optison与TUS一起使用时获得的生物效应不同。我们的数据表明,单独使用TUS对细胞膜的影响机制与使用Optison时不同。