作者
Ye Tian, Yipu Zhao, Chong Yin, Shenxing Tan, Xue Wang, Chaofei Yang, Tuo-Di Zhang, Xi Zhang, Fei Ye, Jing Xu, Xianglong Wu, Li Ding, Jie Zhang, Jiawei Pei, Xue-Ting Wang, Rui Xue Zhang, Jianrong Xu, Weisi Wang, Carlos DM Filipe, Todd Hoare, Da-Chuan Yin, Airong Qian, Xudong Deng
发表日期
2022/5/1
期刊
Journal of Controlled Release
卷号
345
页码范围
20-37
出版商
Elsevier
简介
Polymeric carriers for RNA therapy offer potential advantages in terms of low immunogenicity, promoting modifiability and accelerating intracellular transport. However, balancing high transfection efficacy with low toxicity remains challenging with polymer-based vehicles; indeed, polyethyleneimine (PEI) remains the “gold standard” polymer for this purpose despite its significant toxicity limitations. Herein, we demonstrate the potential of polyvinylamine (PVAm), a commodity high-charge cationic polymer used in the papermaking industry and has similar structure with PEI, as an alternative carrier for RNA delivery. High levels of transfection of normal, tumor, and stem cells with a variety of RNA cargoes including small interfering RNA (siRNA), microRNA (miRNA), and recombinant RNA can be achieved in vitro under the proper complex conditions. While, both the anti-tumor effect achieved in a xenograft osteosarcoma …
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