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首页> 外文期刊>International Journal of Nanomedicine >Anchoring of self-assembled plasmid DNA/ anti-DNA antibody/cationic lipid micelles on bisphosphonate-modified stent for cardiovascular gene delivery
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Anchoring of self-assembled plasmid DNA/ anti-DNA antibody/cationic lipid micelles on bisphosphonate-modified stent for cardiovascular gene delivery

机译:自组装质粒DNA /抗DNA抗体/阳离子脂质胶束在双膦酸酯修饰的支架上的固定,用于心血管基因的传递

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Purpose: To investigate the anchoring of plasmid DNA/anti-DNA antibody/cationic lipid tri-complex (DAC micelles) onto bisphosphonate-modified 316 L coronary stents for cardiovascular site-specific gene delivery. Methods: Stents were first modified with polyallylamine bisphosphonate (PAA-BP), thereby enabling the retention of a PAA-BP molecular monolayer that permits the anchoring (via vector-binding molecules) of DAC micelles. DAC micelles were then chemically linked onto the PAA-BP-modified stents by using N-succinimidyl-3-(2-pyridyldithiol)-propionate (SPDP) as a crosslinker. Rhodamine-labeled DNA was used to assess the anchoring of DAC micelles, and radioactive-labeled antibody was used to evaluate binding capacity and stability. DAC micelles (encoding green fluorescent protein) were tethered onto the PAA-BP-modified stents, which were assessed in cell culture. The presence of a PAA-BP molecular monolayer on the steel surface was confirmed by X-ray photoelectron spectroscopy and atomic force microscope analysis. Results: The anchoring of DAC micelles was generally uniform and devoid of large-scale patches of defects. Isotopic quantification confirmed that the amount of antibody chemically linked on the stents was 17-fold higher than that of the physical adsorbed control stents and its retention time was also significantly longer. In cell culture, numerous green fluorescent protein-positive cells were found on the PAA-BP modified stents, which demonstrated high localization and efficiency of gene delivery. Conclusion: The DAC micelle-immobilized PAA-BP-modified stents were successful as a gene delivery system. Gene delivery using DAC micelle-tethered stent-based PAA-BP functionalization should be suitable for a wide array of single or multiple therapeutic gene strategies, and could be used on cardiovascular metallic implants for achieving efficient gene therapy.
机译:目的:研究质粒DNA /抗DNA抗体/阳离子脂质三复合物(DAC胶束)在双膦酸酯修饰的316 L冠状动脉支架上的锚定,用于心血管部位特异性基因的递送。方法:首先用聚烯丙胺双膦酸酯(PAA-BP)修饰支架,从而保留PAA-BP分子单层,从而允许(通过载体结合分子)锚定DAC胶束。然后通过使用N-琥珀酰亚胺基-3-(2-吡啶基二硫醇)-丙酸酯(SPDP)作为交联剂,将DAC胶束化学连接到PAA-BP修饰的支架上。罗丹明标记的DNA用于评估DAC胶束的锚定,放射性标记的抗体用于评估结合能力和稳定性。将DAC胶束(编码绿色荧光蛋白)拴在PAA-BP修饰的支架上,并在细胞培养中进行评估。通过X射线光电子能谱和原子力显微镜分析证实了在钢表面上PAA-BP分子单层的存在。结果:DAC胶束的锚固通常是均匀的,并且没有大量缺陷。同位素定量证实,化学连接在支架上的抗体数量比物理吸附的对照支架高17倍,并且其保留时间也明显更长。在细胞培养中,在PAA-BP修饰的支架上发现了许多绿色荧光蛋白阳性细胞,这证明了其高定位性和基因传递效率。结论:DAC胶束固定的PAA-BP修饰的支架已成功用作基因递送系统。使用基于DAC胶束连接的支架的PAA-BP功能进行基因递送应适用于多种单一或多种治疗基因策略,并可用于心血管金属植入物以实现有效的基因治疗。

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