Fernandez Christian A, Rice Kevin G
Division of Pharmaceutics, College of Pharmacy, University of Iowa, Iowa City, Iowa 52242, USA.
Mol Pharm. 2009 Sep-Oct;6(5):1277-89. doi: 10.1021/mp900033j.
Improving the transfection efficiencies of nonviral gene delivery requires properly engineered nanoscaled delivery carriers that can overcome the multiple barriers associated with the delivery of oligonucleotides from the site of administration to the nucleus or cytoplasm of the target cell. This article reviews the current advantages and limitation of polyplex nonviral delivery systems, including the apparent barriers that limit gene expression efficiency compared to physical methods such as hydrodynamic dosing and electroporation. An emphasis is placed on engineered nanoscaled polyplexes (NSPs) of modular design that both self-assemble and systematically disassemble at the desired stage of delivery. It is suggested that NSPs of increasingly sophisticated designs are necessary to improve the efficiency of the rate limiting steps in gene delivery.
提高非病毒基因递送的转染效率需要经过适当工程设计的纳米级递送载体,这些载体能够克服与寡核苷酸从给药部位递送至靶细胞核或细胞质相关的多种障碍。本文综述了多聚体非病毒递送系统的当前优势和局限性,包括与诸如流体动力学给药和电穿孔等物理方法相比限制基因表达效率的明显障碍。重点介绍了模块化设计的工程化纳米级多聚体(NSP),其在递送的期望阶段既能自组装又能系统地解体。有人认为,需要设计越来越复杂的NSP来提高基因递送中限速步骤的效率。