Raad Markus de, Teunissen Erik A, Mastrobattista Enrico
Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Faculty of Science, University of Utrecht, Universiteitsweg 99, 3584 CG Utrecht, The Netherlands.
Nanomedicine (Lond). 2014 Jul;9(14):2217-32. doi: 10.2217/nnm.14.90.
The therapeutic use of nucleic acids relies on the availability of sophisticated delivery systems for targeted and intracellular delivery of these molecules. Such a gene delivery should possess essential characteristics to overcome several extracellular and intracellular barriers. Peptides offer an attractive platform for nonviral gene delivery, as several functional peptide classes exist capable of overcoming these barriers. However, none of these functional peptide classes contain all the essential characteristics required to overcome all of the barriers associated with successful gene delivery. Combining functional peptides into multifunctional peptide vectors will be pivotal for improving peptide-based gene delivery systems. By using combinatorial strategies and high-throughput screening, the identification of multifunctional peptide vectors will accelerate the optimization of peptide-based gene delivery systems.
核酸的治疗用途依赖于复杂的递送系统,以便将这些分子靶向递送至细胞内。这样的基因递送应具备基本特征,以克服若干细胞外和细胞内障碍。肽为非病毒基因递送提供了一个有吸引力的平台,因为存在几种能够克服这些障碍的功能性肽类别。然而,这些功能性肽类别中没有一种包含克服与成功基因递送相关的所有障碍所需的所有基本特征。将功能性肽组合成多功能肽载体对于改进基于肽的基因递送系统至关重要。通过使用组合策略和高通量筛选,多功能肽载体的鉴定将加速基于肽的基因递送系统的优化。