Department of Biochemistry, Simmons Comprehensive Cancer Center, The University of Texas Southwestern Medical Center, Dallas, Texas 75390, United States.
J Am Chem Soc. 2021 Dec 22;143(50):21321-21330. doi: 10.1021/jacs.1c09822. Epub 2021 Dec 8.
Polymers represent a promising therapeutic platform for extrahepatic messenger RNA (mRNA) delivery but are hampered by low efficacy due to polyplex serum instability and inadequate endosomal escape following systemic administration. Here, we report the rational design and combinatorial synthesis of zwitterionic phospholipidated polymers (ZPPs) via cationic polymer postmodification by alkylated dioxaphospholane oxides to deliver mRNA to spleen and lymph nodes . This modular postmodification approach readily produces tunable zwitterionic species for serum resistance and introduces alkyl chains simultaneously to enhance endosomal escape, thereby transforming deficient cationic polymers to efficacious zwitterionic mRNA carriers without the need to elaborately synthesize functional monomers. ZPPs mediated up to 39 500-fold higher protein expression than their parent cationic counterparts and enabled efficacious mRNA delivery selectively in spleen and lymph nodes following intravenous administration . This zwitterionic phospholipidation methodology provides a versatile and generalizable postmodification strategy to introduce zwitterions into the side chains of cationic polymers, extending the utility of cationic polymer families for precise mRNA delivery and demonstrating substantial potential for immunotherapeutic applications.
聚合物是一种很有前途的治疗性平台,可用于肝外信使 RNA(mRNA)的递药,但由于多聚物在血清中的不稳定性和全身给药后内体逃逸不足,其疗效较低。在这里,我们通过阳离子聚合物的烷基化二氧杂环磷烷氧化物的后期修饰,报告了两性离子磷脂化聚合物(ZPP)的合理设计和组合合成,以将 mRNA 递送至脾脏和淋巴结。这种模块化的后期修饰方法可轻松产生用于抵抗血清的可调两性离子物质,并同时引入烷基链以增强内体逃逸,从而将低效的阳离子聚合物转化为有效的两性离子 mRNA 载体,而无需精心合成功能单体。ZPP 介导的蛋白表达水平比其母体阳离子聚合物高 39500 倍,并且在静脉注射后能够有效地选择性递送至脾脏和淋巴结中的 mRNA。这种两性离子磷脂化方法为向阳离子聚合物的侧链中引入两性离子提供了一种通用且可扩展的后期修饰策略,扩展了阳离子聚合物家族在精确 mRNA 递药方面的应用,并为免疫治疗应用展示了巨大的潜力。