Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, Taipei, Taiwan.
J Gene Med. 2010 Feb;12(2):168-79. doi: 10.1002/jgm.1418.
Gene therapy has been used to treat a variety of health problems, but transfection inefficiency and the lack of safe vectors have limited clinical progress. Fabrication of a vector that is safe and has high transfection efficiency is crucial for the development of successful gene therapy. The present study aimed to synthesize chitosan-alginate nanoparticles that can be used as carriers of the pAcGFP1-C1 plasmid and to use these nanoparticles with an ultrasound protocol to achieve high efficiency gene transfection.
Chitosan was complexed with alginate and the pAcGFP1-C1 plasmid at different charge ratios to create chitosan-alginate-DNA nanoparticles (CADNs). The average particle size and loading efficiency were measured. Plasmid DNA retardation and integrity were analysed on 1% agarose gels. The effect of CADNs and ultrasound on the efficiency of transfection of cells and subcutaneous tumors was evaluated.
In the CADNs, the average size of incorporated plasmid DNA was 600-650 nm and the loading efficiency was greater than 90%. On the basis of the results of the plasmid DNA protection test, CADNs could protect the transgene from DNase I degradation. The transgene product expression could be enhanced efficiently if cells or tumor tissues were first given CADNs and then treated with ultrasound.
The use of CADNs combined with an ultrasound regimen is a promising method for safe and effective gene therapy.
基因治疗已被用于治疗各种健康问题,但转染效率低和缺乏安全载体限制了其临床进展。制造一种安全且具有高效转染效率的载体对于成功的基因治疗的发展至关重要。本研究旨在合成壳聚糖-海藻酸钠纳米粒子,可作为 pAcGFP1-C1 质粒的载体,并使用这些纳米粒子和超声方案实现高效基因转染。
将壳聚糖与海藻酸钠和 pAcGFP1-C1 质粒以不同的电荷比复合,以创建壳聚糖-海藻酸钠-DNA 纳米粒子(CADNs)。测量平均粒径和载药量。在 1%琼脂糖凝胶上分析质粒 DNA 的阻滞和完整性。评估 CADNs 和超声对细胞和皮下肿瘤转染效率的影响。
在 CADNs 中,整合的质粒 DNA 的平均大小为 600-650nm,载药量大于 90%。根据质粒 DNA 保护试验的结果,CADNs 可以保护转基因免受 DNase I 降解。如果先给予 CADNs 然后再用超声处理细胞或肿瘤组织,则可以有效增强转基因产物的表达。
CADNs 联合超声方案是一种安全有效的基因治疗有前途的方法。