Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, China.
Key Lab of Biomedical Materials of Natural Macromolecules (Beijing University of Chemical Technology, Ministry of Education), Beijing Laboratory of Biomedical Materials, Beijing University of Chemical Technology, Beijing, China.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2020 Sep;12(5):e1631. doi: 10.1002/wnan.1631. Epub 2020 Mar 16.
Nowadays, nucleic acid-based therapy has become a promising way for the treatment of various malignant diseases like cancers. However, the process of nucleic acid delivery is hampered by several extracellular and intracellular obstacles. To overcome these obstacles, many nucleic acid delivery carriers have been developed to achieve improved safety and enhanced gene transfection performance. Among these carriers, degradable branched polycations have attracted much attention due to their good responsive degradability and impressive transfection performances. In this review, we mainly summarized the redox- and pH-responsive degradable branched polycationic systems used for nucleic acid delivery. For responsive degradable branched polycationic systems, the preparation methods were introduced, where amino-epoxy ring-opening reaction as a novel step growth approach was mainly presented. The properties of redox- and pH-responsive degradable branched polycationic systems were subsequently introduced and highlighted. We hope this brief review will motivate the delicate design of responsive degradable branched polycationic systems for potential clinical applications. This article is categorized under: Biology-Inspired Nanomaterials > Nucleic Acid-Based Structures.
如今,基于核酸的治疗方法已成为治疗癌症等各种恶性疾病的一种有前途的手段。然而,核酸的传递过程受到多种细胞外和细胞内障碍的阻碍。为了克服这些障碍,已经开发了许多核酸传递载体,以实现提高的安全性和增强的基因转染性能。在这些载体中,由于其良好的响应性降解性和令人印象深刻的转染性能,可降解支化聚阳离子引起了广泛关注。在这篇综述中,我们主要总结了用于核酸传递的氧化还原和 pH 响应性可降解支化聚阳离子体系。对于响应性可降解支化聚阳离子体系,介绍了其制备方法,主要介绍了氨基-环氧开环反应作为一种新的逐步增长方法。随后介绍并强调了氧化还原和 pH 响应性可降解支化聚阳离子体系的性质。我们希望这篇简短的综述将激发用于潜在临床应用的响应性可降解支化聚阳离子体系的精心设计。本文属于以下分类:生物启发纳米材料 > 基于核酸的结构。