基因传递
内体
核酸
肽
体内
报告基因
化学
细胞生物学
遗传增强
两亲性
生物化学
生物物理学
基因表达
细胞
生物
基因
共聚物
生物技术
有机化学
聚合物
作者
Helen O. McCarthy,Joanne McCaffrey,Cian M. McCrudden,Aleksey Zholobenko,Ahlam Ali,J.W. McBride,Ashley S. Massey,Sreekanth Pentlavalli,Kun-Hung Chen,Grace Cole,Stephen P. Loughran,Nicholas Dunne,Ryan F. Donnelly,Victoria Kett,Tracy Robson
标识
DOI:10.1016/j.jconrel.2014.06.048
摘要
The design of a non-viral gene delivery vehicle capable of delivering and releasing a functional nucleic acid cargo intracellularly remains a formidable challenge. For systemic gene therapy to be successful a delivery vehicle is required that protects the nucleic acid cargo from enzymatic degradation, extravasates from the vasculature, traverses the cell membrane, disrupts the endosomal vesicles and unloads the cargo at its destination site, namely the nucleus for the purposes of gene delivery. This manuscript reports the extensive investigation of a novel amphipathic peptide composed of repeating RALA units capable of overcoming the biological barriers to gene delivery both in vitro and in vivo. Our data demonstrates the spontaneous self-assembly of cationic DNA-loaded nanoparticles when the peptide is complexed with pDNA. Nanoparticles were <100nm, were stable in the presence of serum and were fusogenic in nature, with increased peptide α-helicity at a lower pH. Nanoparticles proved to be non-cytotoxic, readily traversed the plasma membrane of both cancer and fibroblast cell lines and elicited reporter-gene expression following intravenous delivery in vivo. The results of this study indicate that RALA presents an exciting delivery platform for the systemic delivery of nucleic acid therapeutics.
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