Department of Modern Sciences and Technologies, School of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.
J Gene Med. 2010 Sep;12(9):729-38. doi: 10.1002/jgm.1490.
Carboxyalkylation of branched 25 kDa polyethylenimine (PEI) was considered to reduce the positive surface charge of the polymer without reducing its 'proton sponge' buffering capacity, and to provide alkylene domains for hydrophobic interactions, thus generating optimized novel PEI carriers for efficient delivery of small interfering RNA (siRNA).
Substitution of PEI was evaluated in the range of 6 to > 50 mole percentage of primary amines. Additionally, variation of the carboxyalkyl chain (one to 15 methylene groups) was explored to modulate the carrier hydrophobicity. Carriers were characterized in their buffering capacity, capability of siRNA polyplex formation, and cytotoxicity. Marker gene-silencing efficacy was evaluated using Neuro2A-eGFPLuc neuroblastoma cells.
Carboxyalkylation strongly reduced cytotoxicity of PEI and improved siRNA mediated luciferase gene knockdown. An optimum silencing activity was observed at an alkylcarboxylation degree of 6-9 mole percentage of primary amines and with a broad range of carboxyalkylene chains (containing one to 15 methylene groups). Strongly enhanced gene-silencing efficacy also was observed when the biocompatible polymers were separately added at 1 h after transfection with tolerated doses of standard PEI25/siRNA polyplexes.
Carboxyalkylation of branched 25 kDa PEI resulted in polymers with strongly reduced cytotoxicity and improved silencing efficacy. Mechanistic studies demonstrated that the presence of a surplus of free carboxyalkylated polymer is responsible for the improved siRNA delivery.
支化 25kDa 聚亚乙基亚胺(PEI)的羧烷基化被认为可以降低聚合物的正表面电荷,而不会降低其“质子海绵”缓冲能力,并为疏水性相互作用提供亚烷基域,从而生成优化的新型 PEI 载体,以有效递送小干扰 RNA(siRNA)。
评估了取代度在 6 到 >50 摩尔百分比的伯胺范围内的 PEI。此外,还探索了羧烷基链(1 到 15 个亚甲基)的变化,以调节载体疏水性。通过缓冲能力、siRNA 多聚物形成能力和细胞毒性来表征载体。使用 Neuro2A-eGFPLuc 神经母细胞瘤细胞评估标记基因沉默功效。
羧烷基化强烈降低了 PEI 的细胞毒性并提高了 siRNA 介导的荧光素酶基因敲低。在烷基羧化度为 6-9 摩尔百分比的伯胺和广泛的羧亚烷基链(含有 1 到 15 个亚甲基)的情况下观察到最佳的沉默活性。当在与耐受剂量的标准 PEI25/siRNA 多聚物转染后 1 小时分别加入生物相容性聚合物时,也观察到强烈增强的基因沉默功效。
支化 25kDa PEI 的羧烷基化导致具有强烈降低的细胞毒性和提高的沉默功效的聚合物。机制研究表明,多余的游离羧烷基化聚合物的存在是提高 siRNA 递送的原因。