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带有侧翼可水解酪氨酸基团的嵌段阳离子聚合物增强了信使核糖核酸递送——π-π堆积辅助的胶束组装。

Block catiomers with flanking hydrolyzable tyrosinate groups enhance mRNA delivery π-π stacking-assisted micellar assembly.

作者信息

Yang Wenqian, Miyazaki Takuya, Nakagawa Yasuhiro, Boonstra Eger, Masuda Keita, Nakashima Yuki, Chen Pengwen, Mixich Lucas, Barthelmes Kevin, Matsumoto Akira, Mi Peng, Uchida Satoshi, Cabral Horacio

机构信息

Department of Bioengineering, Graduate School of Engineering, The University of Tokyo, Tokyo, Japan.

Department of Radiology, Center for Medical Imaging, and State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, Sichuan University, Chengdu, China.

出版信息

Sci Technol Adv Mater. 2023 Mar 16;24(1):2170164. doi: 10.1080/14686996.2023.2170164. eCollection 2023.

Abstract

Messenger RNA (mRNA) therapeutics have recently demonstrated high clinical potential with the accelerated approval of SARS-CoV-2 vaccines. To fulfill the promise of unprecedented mRNA-based treatments, the development of safe and efficient carriers is still necessary to achieve effective delivery of mRNA. Herein, we prepared mRNA-loaded nanocarriers for enhanced delivery using biocompatible block copolymers having functional amino acid moieties for tunable interaction with mRNA. The block copolymers were based on flexible poly(ethylene glycol)-poly(glycerol) (PEG-PG) modified with glycine (Gly), leucine (Leu) or tyrosine (Tyr) ester bonds to generate block catiomers. Moreover, the amino acids can be gradually detached from the block copolymers after ester bond hydrolyzation, avoiding cytotoxic effects. When mixed with mRNA, the block catiomers formed narrowly distributed polymeric micelles with high stability and enhanced delivery efficiency. Particularly, the micelles based on tyrosine-modified PEG-PG (PEG-PGTyr), which formed a polyion complex (PIC) and π-π stacking with mRNA, displayed excellent stability against polyanions and promoted mRNA integrity in serum. PEG-PGTyr-based micelles also increased the cellular uptake and the endosomal escape, promoting high protein expression both and . Furthermore, the PEG-PGTyr-based micelles significantly extended the half-life of the loaded mRNA after intravenous injection. Our results highlight the potential of PEG-PGTyr-based micelles as safe and effective carriers for mRNA, expediting the rational design of polymeric materials for enhanced mRNA delivery.

摘要

信使核糖核酸(mRNA)疗法最近随着SARS-CoV-2疫苗的加速获批展现出了很高的临床潜力。为了实现前所未有的基于mRNA的治疗前景,开发安全高效的载体对于实现mRNA的有效递送仍然是必要的。在此,我们制备了负载mRNA的纳米载体,以使用具有功能性氨基酸部分的生物相容性嵌段共聚物来增强递送,从而实现与mRNA的可调相互作用。这些嵌段共聚物基于用甘氨酸(Gly)、亮氨酸(Leu)或酪氨酸(Tyr)酯键修饰的柔性聚(乙二醇)-聚(甘油)(PEG-PG),以生成嵌段阳离子聚合物。此外,酯键水解后氨基酸可逐渐从嵌段共聚物上脱离,避免细胞毒性作用。当与mRNA混合时,嵌段阳离子聚合物形成了具有高稳定性和增强递送效率的窄分布聚合物胶束。特别地,基于酪氨酸修饰的PEG-PG(PEG-PGTyr)形成聚离子复合物(PIC)并与mRNA形成π-π堆积的胶束,对聚阴离子显示出优异的稳定性,并在血清中促进mRNA的完整性。基于PEG-PGTyr的胶束还增加了细胞摄取和内体逃逸,促进了高蛋白质表达。此外,基于PEG-PGTyr的胶束在静脉注射后显著延长了负载mRNA的半衰期。我们的结果突出了基于PEG-PGTyr的胶束作为mRNA安全有效载体的潜力,加快了用于增强mRNA递送的聚合物材料的合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a3a/10026751/7965d1e4cd1f/TSTA_A_2170164_UF0001_OC.jpg

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