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Exploring the role of polymer structure on intracellular nucleic acid delivery via polymeric nanoparticles

机译:探索聚合物结构在通过聚合物纳米颗粒递送细胞内核酸中的作用

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摘要

Intracellular nucleic acid delivery has the potential to treat many genetically-based diseases, however, gene delivery safety and efficacy remains a challenging obstacle. One promising approach is the use of polymers to form polymeric nanoparticles with nucleic acids that have led to exciting advances in non-viral gene delivery. Understanding the successes and failures of gene delivery polymers and structures is key to engineering optimal polymers for gene delivery in the future. This article discusses the polymer structural features that enable effective intracellular delivery of DNA and RNA, including protection of nucleic acid cargo, cellular uptake, endosomal escape, vector unpacking, and delivery to the intracellular site of activity. The chemical properties that aid in each step of intracellular nucleic acid delivery are described and specific structures of note are highlighted. Understanding the chemical design parameters of polymeric nucleic acid delivery nanoparticles is important to achieving the goal of safe and effective non-viral genetic nanomedicine.
机译:细胞内核酸递送具有治疗许多基于遗传的疾病的潜力,但是,基因递送的安全性和有效性仍然是挑战性的障碍。一种有前途的方法是使用聚合物与核酸形成聚合物纳米颗粒,从而导致非病毒基因递送的令人兴奋的进展。了解基因传递聚合物和结构的成功与失败,是将来为基因传递设计最佳聚合物的关键。本文讨论了能够有效地向细胞内递送DNA和RNA的聚合物结构特征,包括保护核酸货物,细胞摄取,内体逃逸,载体解包装以及向细胞内活性位点的递送。描述了有助于细胞内核酸递送的每个步骤的化学性质,并着重指出了具体的结构。了解聚合核酸递送纳米颗粒的化学设计参数对于实现安全有效的非病毒遗传纳米药物的目标很重要。

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