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Transgene delivery using poly(amino ether)-gold nanorod assemblies

机译:使用聚(氨基醚)-金纳米棒组件进行转基因递送

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Gold nanorods (GNRs) have emerged as promising nanomaterials for biosensing, imaging, photothermal treatment, and therapeutic delivery for several diseases, including cancer. We have generated poly(amino ether)-functionalized gold nanorods (PAE-GNRs) using a layer-by-layer deposition approach; polymers from a poly(amino ether) library recently synthesized in our laboratory were employed to generate the PAE-GNR assemblies. PAE-GNR assemblies demonstrate long-term colloidal stability as well as the capacity to bind plasmid DNA by means of electrostatic interactions. Sub-toxic concentrations of PAE-GNRs were employed to deliver plasmid DNA to prostate cancer cells in vitro. PAE-GNRs generated using 1,4C-1,4Bis, a cationic polymer from our laboratory demonstrated significantly higher transgene expression and exhibited lower cytotoxicities when compared to similar assemblies generated using 25kDa poly(ethylene imine) (PEI25k-GNRs), a current standard for polymer-mediated gene delivery. The roles of polyelectrolyte chemistry and zeta-potential in determining transgene expression efficacies of PAE-GNR assemblies were investigated. Our results indicate that stable and effective PAE-GNR assemblies are a promising engineered platform for transgene delivery. PAE-GNRs also have the potential to be used simultaneously for photothermal ablation, photothermally enhanced drug and gene delivery, and biological imaging, thus making them a powerful theranostic platform.
机译:金纳米棒(GNR)已经成为一种有前途的纳米材料,可用于生物传感,成像,光热处理和治疗多种疾病,包括癌症。我们已经使用逐层沉积方法生成了聚(氨基醚)官能化的金纳米棒(PAE-GNRs);最近在我们实验室中合成的聚(氨基醚)库中的聚合物被用于生成PAE-GNR组件。 PAE-GNR组件表现出长期的胶体稳定性以及通过静电相互作用结合质粒DNA的能力。使用亚毒性浓度的PAE-GNR在体外将质粒DNA递送至前列腺癌细胞。与当前标准使用25kDa聚乙烯亚胺(PEI25k-GNRs)生成的类似组件相比,使用我们实验室的阳离子聚合物1,4C-1,4Bis生成的PAE-GNRs表现出明显更高的转基因表达,并显示出较低的细胞毒性。用于聚合物介导的基因递送。研究了聚电解质化学和ζ电位在确定PAE-GNR装配体的转基因表达效率中的作用。我们的结果表明,稳定有效的PAE-GNR组件是用于转基因递送的有前途的工程平台。 PAE-GNRs也有潜力同时用于光热消融,光热增强的药物和基因传递以及生物成像,因此使其成为强大的治疗学平台。

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