Divisions of Pharmaceutics and Medicinal and Natural Products Chemistry, College of Pharmacy, University of Iowa, Iowa City, IA 52242, USA.
Gene Ther. 2011 Jan;18(1):23-37. doi: 10.1038/gt.2010.117. Epub 2010 Aug 19.
A novel class of PEGylated polyacridine peptides was developed that mediate potent stimulated gene transfer in the liver of mice. Polyacridine peptides, (Acr-X)(n)-Cys-polyethylene glycol (PEG), possessing 2-6 repeats of Lys-acridine (Acr) spaced by either Lys, Arg, Leu or Glu, were Cys derivatized with PEG (PEG(5000 kDa)) and evaluated as in vivo gene transfer agents. An optimal peptide of (Acr-Lys)(6)-Cys-PEG was able to bind to plasmid DNA (pGL3) with high affinity by polyintercalation, stabilize DNA from metabolism by DNAse and extend the pharmacokinetic half-life of DNA in the circulation for up to 2 h. A tail vein dose of PEGylated polyacridine peptide pGL3 polyplexes (1 μg in 50 μl), followed by a stimulatory hydrodynamic dose of normal saline at times ranging from 5 to 60 min post-DNA administration, led to a high level of luciferase expression in the liver, equivalent to levels mediated by direct hydrodynamic dosing of 1 μg of pGL3. The results establish the unique properties of PEGylated polyacridine peptides as a new and promising class of gene delivery peptides that facilitate reversible binding to plasmid DNA, protecting it from DNase in vivo resulting in an extended circulatory half-life, and release of transfection-competent DNA into the liver to mediate a high-level of gene expression upon hydrodynamic boost.
开发了一类新型聚乙二醇化聚吖啶肽,可在小鼠肝脏中实现有效的刺激基因转移。聚吖啶肽(Acr-X)(n)-Cys-聚乙二醇(PEG),具有 2-6 个赖氨酸-吖啶(Acr)重复序列,间隔为赖氨酸、精氨酸、亮氨酸或谷氨酸,通过 Cys 与聚乙二醇(PEG(5000 kDa))衍生化,并作为体内基因转移剂进行评估。最优的肽(Acr-Lys)(6)-Cys-PEG 能够通过多嵌入与质粒 DNA(pGL3)高亲和力结合,通过 DNA 酶稳定 DNA 代谢,并将 DNA 在循环中的药代动力学半衰期延长至 2 小时。尾静脉给予聚乙二醇化聚吖啶肽 pGL3 多聚物(1μg 在 50μl 中),然后在 DNA 给药后 5 至 60 分钟范围内给予生理盐水刺激动力学剂量,导致肝脏中高水平的荧光素酶表达,相当于直接水动力剂量 1μg 的 pGL3 介导的水平。结果确立了聚乙二醇化聚吖啶肽作为一种新的有前途的基因传递肽的独特性质,可促进与质粒 DNA 的可逆结合,保护其免受体内 DNA 酶的影响,从而延长循环半衰期,并将转染能力的 DNA 释放到肝脏中,在水力推动下介导高水平的基因表达。