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基于聚合物胶束的核酸递送系统

Polymeric-Micelle-Based Delivery Systems for Nucleic Acids.

作者信息

Sinani Genada, Durgun Meltem Ezgi, Cevher Erdal, Özsoy Yıldız

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, Altinbas University, 34147 Istanbul, Türkiye.

Department of Pharmaceutical Technology, Faculty of Pharmacy, Istanbul University, 34126 Istanbul, Türkiye.

出版信息

Pharmaceutics. 2023 Jul 26;15(8):2021. doi: 10.3390/pharmaceutics15082021.

Abstract

Nucleic acids can modulate gene expression specifically. They are increasingly being utilized and show huge potential for the prevention or treatment of various diseases. However, the clinical translation of nucleic acids faces many challenges due to their rapid clearance after administration, low stability in physiological fluids and limited cellular uptake, which is associated with an inability to reach the intracellular target site and poor efficacy. For many years, tremendous efforts have been made to design appropriate delivery systems that enable the safe and effective delivery of nucleic acids at the target site to achieve high therapeutic outcomes. Among the different delivery platforms investigated, polymeric micelles have emerged as suitable delivery vehicles due to the versatility of their structures and the possibility to tailor their composition for overcoming extracellular and intracellular barriers, thus enhancing therapeutic efficacy. Many strategies, such as the addition of stimuli-sensitive groups or specific ligands, can be used to facilitate the delivery of various nucleic acids and improve targeting and accumulation at the site of action while protecting nucleic acids from degradation and promoting their cellular uptake. Furthermore, polymeric micelles can be used to deliver both chemotherapeutic drugs and nucleic acid therapeutics simultaneously to achieve synergistic combination treatment. This review focuses on the design approaches and current developments in polymeric micelles for the delivery of nucleic acids. The different preparation methods and characteristic features of polymeric micelles are covered. The current state of the art of polymeric micelles as carriers for nucleic acids is discussed while highlighting the delivery challenges of nucleic acids and how to overcome them and how to improve the safety and efficacy of nucleic acids after local or systemic administration.

摘要

核酸能够特异性地调节基因表达。它们正越来越多地被应用,并在预防或治疗各种疾病方面显示出巨大潜力。然而,核酸的临床转化面临诸多挑战,这是由于其给药后迅速清除、在生理流体中稳定性低以及细胞摄取受限,这些问题导致无法到达细胞内靶点且疗效不佳。多年来,人们付出了巨大努力来设计合适的递送系统,以实现核酸在靶点的安全有效递送,从而获得高治疗效果。在研究的不同递送平台中,聚合物胶束因其结构的多功能性以及能够定制其组成以克服细胞外和细胞内屏障、从而提高治疗效果,而成为合适的递送载体。许多策略,如添加刺激敏感基团或特异性配体,可用于促进各种核酸的递送,改善在作用部位的靶向性和积累,同时保护核酸不被降解并促进其细胞摄取。此外,聚合物胶束可用于同时递送化疗药物和核酸治疗剂,以实现协同联合治疗。本综述重点关注用于递送核酸的聚合物胶束的设计方法和当前进展。涵盖了聚合物胶束的不同制备方法和特征。讨论了聚合物胶束作为核酸载体的当前技术水平,同时强调了核酸的递送挑战以及如何克服这些挑战,以及如何提高核酸在局部或全身给药后的安全性和疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ff4/10457940/295aa81ac9eb/pharmaceutics-15-02021-g001.jpg

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