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首页> 外文期刊>International Journal of Nanomedicine >One-step synthesis of gene carrier via gamma irradiation and its application in tumor gene therapy
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One-step synthesis of gene carrier via gamma irradiation and its application in tumor gene therapy

机译:γ射线一步法合成基因载体及其在肿瘤基因治疗中的应用

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Introduction: Although numerous studies have been conducted with the aim of developing drug-delivery systems, chemically synthesized gene carriers have shown limited applications in the biomedical fields due to several problems, such as low-grafting yields, undesirable reactions, difficulties in controlling the reactions, and high-cost production owing to multi-step manufacturing processes. Materials and methods: We developed a 1-step synthesis process to produce 2-aminoethyl methacrylate-grafted water-soluble chitosan (AEMA-g-WSC) as a gene carrier, using gamma irradiation for simultaneous synthesis and sterilization, but no catalysts or photoinitiators. We analyzed the AEMA graft site on WSC using 2-dimensional nuclear magnetic resonance spectroscopy (2D NMR; 1H and 13C NMR), and assayed gene transfection effects in vitro and in vivo. Results: We revealed selective grafting of AEMA onto C6-OH groups of WSC. AEMA-g-WSC effectively condensed plasmid DNA to form polyplexes in the size range of 170 to 282 nm. AEMA-g-WSC polyplexes in combination with psi-hBCL2 (a vector expressing short hairpin RNA against BCL2 mRNA) inhibited tumor cell proliferation and tumor growth in vitro and in vivo, respectively, by inducing apoptosis. Conclusion: The simple grafting process mediated via gamma irradiation is a promising method for synthesizing gene carriers.
机译:简介:尽管已经进行了许多研究,以开发药物输送系统,但是化学合成的基因载体由于诸如嫁接得率低,不良反应,难以控制反应等问题而在生物医学领域显示出有限的应用。以及由于多步制造工艺而导致的高成本生产。材料和方法:我们开发了一种第一步合成工艺,以生产2-甲基丙烯酸甲基丙烯酸乙酯接枝的水溶性壳聚糖(AEMA-g-WSC)作为基因载体,使用伽玛射线进行同步合成和灭菌,但没有催化剂或光引发剂。我们使用二维核磁共振波谱(2D NMR; 1 H和 13 C NMR)分析了WSC上的AEMA嫁接位点,并在体外和体外测定了基因转染效果体内。结果:我们揭示了将AEMA选择性接枝到WSC的C6-OH基团上。 AEMA-g-WSC有效地浓缩质粒DNA,形成170至282 nm范围内的多链体。 AEMA-g-WSC复合物与psi-hBCL2(表达针对BCL2 mRNA的短发夹RNA的载体)结合,通过诱导凋亡分别在体外和体内抑制肿瘤细胞的增殖和肿瘤的生长。结论:通过γ射线介导的简单嫁接过程是合成基因载体的有前途的方法。

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