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大小和表面双重工程化的小多聚物用于高效靶向 siRNA 的递送。

Size- and Surface- Dual Engineered Small Polyplexes for Efficiently Targeting Delivery of siRNA.

机构信息

PCFM Lab of Ministry of Education & Guangzhou Key Laboratory of Flexible Electronic Materials and Wearable Devices, School of Materials Science and Engineering, Sun Yat-sen University, Guangzhou 510275, China.

Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

Molecules. 2021 May 27;26(11):3238. doi: 10.3390/molecules26113238.

Abstract

Though siRNA-based therapy has achieved great progress, efficient siRNA delivery remains a challenge. Here, we synthesized a copolymer PAsp(-N=C-PEG)-PCys-PAsp(DETA) consisting of a poly(aspartate) block grafted with comb-like PEG side chains via a pH-sensitive imine bond (PAsp(-N=C-PEG) block), a poly(l-cysteine) block with a thiol group (PCys block), and a cationic poly(aspartate) block grafted with diethylenetriamine (PAsp(DETA) block). The cationic polymers efficiently complexed siRNA into polyplexes, showing a sandwich-like structure with a PAsp(-N=C-PEG) out-layer, a crosslinked PCys interlayer, and a complexing core of siRNA and PAsp(DETA). Low pH-triggered breakage of pH-sensitive imine bonds caused PEG shedding. The disulfide bond-crosslinking and pH-triggered PEG shedding synergistically decreased the polyplexes' size from 75 nm to 26 nm. To neutralize excessive positive charges and introduce the targeting ligand, the polyplexes without a PEG layer were coated with an anionic copolymer modified with the targeting ligand lauric acid. The resulting polyplexes exhibited high transfection efficiency and lysosomal escape capacity. This study provides a promising strategy to engineer the size and surface of polyplexes, allowing long blood circulation and targeted delivery of siRNA.

摘要

尽管基于 siRNA 的治疗方法已经取得了很大的进展,但高效的 siRNA 传递仍然是一个挑战。在这里,我们合成了一种共聚物 PAsp(-N=C-PEG)-PCys-PAsp(DETA),它由通过 pH 敏感亚胺键接枝有梳状 PEG 侧链的聚天冬氨酸(PAsp(-N=C-PEG) 嵌段)、带有巯基的聚 L-半胱氨酸(PCys 嵌段)和接枝有二亚乙基三胺的阳离子聚天冬氨酸(PAsp(DETA) 嵌段)组成。阳离子聚合物可将 siRNA 有效组装成聚合物复合物,形成具有 PAsp(-N=C-PEG) 外层、交联 PCys 夹层和 siRNA 与 PAsp(DETA) 复合核心的三明治样结构。低 pH 触发 pH 敏感亚胺键的断裂导致 PEG 脱落。二硫键交联和 pH 触发的 PEG 脱落协同作用将聚合物复合物的粒径从 75nm 减小至 26nm。为了中和过多的正电荷并引入靶向配体,没有 PEG 层的聚合物复合物用带有靶向配体月桂酸的阴离子共聚物进行包覆。所得聚合物复合物表现出高转染效率和溶酶体逃逸能力。本研究为工程化聚合物复合物的大小和表面提供了一种有前景的策略,允许 siRNA 进行长循环血液传递和靶向递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78d1/8199253/9ee3a314f1bc/molecules-26-03238-g001.jpg

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