Cooper Remy C, Yang Hu
Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, Virginia, USA.
Department of Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, Virginia, USA.
Bioelectricity. 2020 Jun 1;2(2):150-157. doi: 10.1089/bioe.2020.0009. Epub 2020 Jun 17.
Dendrimers are an attractive alternative to viral vectors due to the low cost of production, larger genetic insert-carrying capacity, and added control over immune- and genotoxic complications through versatile functionalization. However, their transfection rates pale in comparison to their viral counterparts, resulting in widespread research efforts in the attempt to improve transfection efficiency. In this work, we designed a synthetic diblock nuclear-localization sequence peptide (NLS) (DDDDDDVKRKKKP) and complexed it with polyamidoamine (PAMAM) dendrimer G4 to form a duplex for gene delivery. We conducted transmission electron microscopy, gel mobility shift assay, and intracellular trafficking studies. We also assessed its transfection efficiency for the delivery of a green fluorescent protein-encoding plasmid (pGFP) to NIH3T3 cells. PAMAM dendrimer G4, NLS, and plasmid DNA can form a stable three-part polyplex and gain enhanced entry into the nucleus. We found transfection efficiency, in large part, depends on the ratio of G4:NLS:plasmid. The triplex prepared at the ratio of 1:60:1 for G4:NLS:pGFP has been shown to be more significantly efficient in transfecting cells than the control group (G4/pGFP, 0.5:1). This new diblock NLS peptide can facilely complex with dendrimers to improve dendrimer-based gene transfection. It can also complex with other polycationic polymers to produce more potent nonviral duplex gene delivery vehicles.
由于生产成本低、携带更大基因插入片段的能力以及通过多功能化对免疫和基因毒性并发症进行额外控制,树枝状聚合物是病毒载体的一种有吸引力的替代物。然而,与病毒载体相比,它们的转染率相形见绌,这导致人们进行了广泛的研究以提高转染效率。在这项工作中,我们设计了一种合成的双嵌段核定位序列肽(NLS)(DDDDDDVKRKKKP),并将其与聚酰胺胺(PAMAM)树枝状聚合物G4复合,形成用于基因递送的双链体。我们进行了透射电子显微镜、凝胶迁移率变动分析和细胞内运输研究。我们还评估了其将绿色荧光蛋白编码质粒(pGFP)递送至NIH3T3细胞的转染效率。PAMAM树枝状聚合物G4、NLS和质粒DNA可以形成稳定的三部分多聚体,并增强进入细胞核的能力。我们发现转染效率在很大程度上取决于G4:NLS:质粒的比例。以1:60:1的比例制备的G4:NLS:pGFP三链体在转染细胞方面比对照组(G4/pGFP,0.5:1)更显著有效。这种新的双嵌段NLS肽可以很容易地与树枝状聚合物复合,以改善基于树枝状聚合物的基因转染。它还可以与其他聚阳离子聚合物复合,以生产更有效的非病毒双链基因递送载体。