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超声可增强逆转录病毒介导的基因转移。

Ultrasound enhances retrovirus-mediated gene transfer.

作者信息

Naka Toshio, Sakoda Tsuyoshi, Doi Takashi, Tsujino Takeshi, Masuyama Tohru, Kawashima Seinosuke, Iwasaki Tadaaki, Ohyanagi Mitsumasa

机构信息

Department of Internal Medicine, Division of Coronary Heart Disease, Hyogo College of Medicine, Nishinomiya, Hyogo, Japan.

出版信息

Prep Biochem Biotechnol. 2007;37(2):87-99. doi: 10.1080/10826060701199007.

Abstract

Viral vector systems are efficient for transfection of foreign genes into many tissues. Especially, retrovirus based vectors integrate the transgene into the genome of the target cells, which can sustain long term expression. However, it has been demonstrated that the transduction efficiency using retrovirus is relatively lower than those of other viruses. Ultrasound was recently reported to increase gene expression using plasmid DNA, with or without, a delivery vehicle. However, there are no reports, which show an ultrasound effect to retrovirus-mediated gene transfer efficiency. Retrovirus-mediated gene transfer systems were used for transfection of 293T cells, bovine aortic endothelial cells (BAECs), rat aortic smooth muscle cells (RASMCs), and rat skeletal muscle myoblasts (L6 cells) with beta-galactosidase (beta-Gal) genes. Transduction efficiency and cell viability assay were performed on 293T cells that were exposed to varying durations (5 to 30 seconds) and power levels (1.0 watts/cm(2) to 4.0 watts/cm(2)) of ultrasound after being transduced by a retrovirus. Effects of ultrasound to the retrovirus itself was evaluated by transduction efficiency of 293T cells. After exposure to varying power levels of ultrasound to a retrovirus for 5 seconds, 293T cells were transduced by a retrovirus, and transduction efficiency was evaluated. Below 1.0 watts/cm(2) and 5 seconds exposure, ultrasound showed increased transduction efficiency and no cytotoxicity to 293T cells transduced by a retrovirus. Also, ultrasound showed no toxicity to the virus itself at the same condition. Exposure of 5 seconds at the power of 1.0 watts/cm(2) of an ultrasound resulted in significant increases in retrovirus-mediated gene expression in all four cell types tested in this experiment. Transduction efficiencies by ultrasound were enhanced 6.6-fold, 4.8-fold, 2.3-fold, and 3.2-fold in 293T cells, BAECs, RASMCs, and L6 cells, respectively. Furthermore, beta-Gal activities were also increased by the retrovirus with ultrasound exposure in these cells. Adjunctive ultrasound exposure was associated with enhanced retrovirus-mediated transgene expression in vitro. Ultrasound associated local gene therapy has potential for not only plasmid-DNA-, but also retrovirus-mediated gene transfer.

摘要

病毒载体系统在将外源基因转染到许多组织中效率很高。特别是,基于逆转录病毒的载体可将转基因整合到靶细胞基因组中,从而能实现长期表达。然而,已证实使用逆转录病毒的转导效率相对低于其他病毒。最近有报道称,无论有无递送载体,超声都能增强使用质粒DNA时的基因表达。然而,尚无报道表明超声对逆转录病毒介导的基因转移效率有影响。逆转录病毒介导的基因转移系统用于用β-半乳糖苷酶(β-Gal)基因转染293T细胞、牛主动脉内皮细胞(BAECs)、大鼠主动脉平滑肌细胞(RASMCs)和大鼠骨骼肌成肌细胞(L6细胞)。在用逆转录病毒转导后,对暴露于不同持续时间(5至30秒)和功率水平(1.0瓦/平方厘米至4.0瓦/平方厘米)超声的293T细胞进行转导效率和细胞活力测定。通过293T细胞的转导效率评估超声对逆转录病毒本身的影响。将逆转录病毒暴露于不同功率水平的超声5秒后,用逆转录病毒转导293T细胞,并评估转导效率。在低于1.0瓦/平方厘米且暴露5秒时,超声显示逆转录病毒转导的293T细胞的转导效率提高且无细胞毒性。同样,在相同条件下超声对病毒本身也无毒性。在本实验中,以1.0瓦/平方厘米的功率超声暴露5秒导致所有四种测试细胞类型中逆转录病毒介导的基因表达显著增加。在293T细胞、BAECs、RASMCs和L6细胞中,超声介导的转导效率分别提高了6.6倍、4.8倍、2.3倍和3.2倍。此外,在这些细胞中,超声暴露的逆转录病毒也增加了β-Gal活性。辅助超声暴露与体外增强逆转录病毒介导的转基因表达相关。超声辅助局部基因治疗不仅对质粒DNA介导,而且对逆转录病毒介导的基因转移都具有潜力。

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