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A novel EGFR-targeted gene delivery system based on complexes self-assembled by EGF, DNA, and activated PAMAM dendrimers

机译:基于EGF,DNA和活化的PAMAM树状分子自组装的复合物的新型EGFR靶向基因递送系统

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Abstract: Epidermal growth factor receptor (EGFR)-targeted gene delivery is a promising approach in gene therapy against EGFR-positive cancer. In addition, macromolecules, such as polyamidoamine (PAMAM) dendrimers, are potential nonviral gene carriers in this therapy because of their biocompatibility and modifiable features. To achieve the goal of selectively enhancing the transfection efficiency in EGFR-positive cancer cells, the researchers developed chemical approaches of EGF-dendrimer conjugate, which were effective but complicated. Studies on liposomes reveal that self-assembly is another effective but simpler approach in EGF modification. Moreover, properly activated PAMAM dendrimers exhibit higher transfection efficiency, but little research has been done on its ligand-modification. In this study, we developed and characterized a novel gene-delivery system based on activated EGF-dendriplexes, which is formed via self-assembly by EGF and complexes prepared by activated PAMAM dendrimer and plasmid DNA. Such complexes exhibit desired features compared to nonmodified or nonactivated dendriplexes in vitro, including selective enhancement of transfection efficiency in EGFR-positive cells, decreased cytotoxicity, and low agonist effect. In vivo experimentation shows their EGFR-positive tumor targeted biodistribution and increased transfection efficiency at EGFR-positive tumors. Our results demonstrated that activated EGF-dendriplexes are safe and effective carriers for delivering gene drugs to EGFR-positive cells, which makes these complexes a promising targeted nonviral gene-delivery system for auxiliary cancer therapy.
机译:摘要:表皮生长因子受体(EGFR)靶向基因传递是针对EGFR阳性癌症的基因治疗中的一种有前途的方法。另外,由于其生物相容性和可修饰的特征,大分子,如聚酰胺基胺(PAMAM)树状大分子,在该疗法中是潜在的非病毒基因载体。为了达到选择性提高EGFR阳性癌细胞转染效率的目的,研究人员开发了EGF-树状聚合物偶联物的化学方法,该方法有效但复杂。对脂质体的研究表明,自组装是EGF修饰的另一种有效但更简单的方法。此外,适当活化的PAMAM树状聚合物表现出较高的转染效率,但对其配体修饰的研究很少。在这项研究中,我们开发和表征了一种基于活化EGF-树突复合物的新型基因传递系统,该系统通过EGF自身组装以及由活化PAMAM树枝状聚合物和质粒DNA制备的复合物形成。与体外未修饰或未活化的树状复合物相比,此类复合物表现出所需的特征,包括选择性增强EGFR阳性细胞中的转染效率,降低的细胞毒性和低激动剂作用。体内实验显示了他们的EGFR阳性肿瘤靶向生物分布,并提高了EGFR阳性肿瘤的转染效率。我们的结果表明,活化的EGF树突状复合物是将基因药物传递至EGFR阳性细胞的安全有效载体,这使这些复合物成为用于辅助癌症治疗的有希望的靶向非病毒基因传递系统。

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