Department of Biochemistry, National University of Singapore, 8 Medical Dr, Singapore 117596
Institute of Materials Research and Engineering, A*STAR (Agency for Science, Technology and Research), 3 Research Link, Singapore 117602
Biosci Rep. 2018 Nov 30;38(6). doi: 10.1042/BSR20181021. Print 2018 Dec 21.
Cationic polymers remain attractive tools for non-viral gene transfer. The effectiveness of these vectors rely on the ability to deliver plasmid DNA (pDNA) into the nucleus of cells. While we have previously demonstrated the potential of Lignin-PGEA-PEGMA as a non-viral gene delivery vector, alterations of cellular phenotype and cytotoxicity were observed post transfection. The present study aims to explore transfection conditions for high efficiency and low toxicity of the Lignin-PGEA-PEGMA based gene delivery system. Cellular toxicity was significantly reduced by using the centrifugation protocol, which enables rapid deposition of DNA complexes. Replacement of media post centrifugation resulted in minimal exposure of cells to excess polymers, which were toxic to cells. At an optimized DNA amount (500-750 ng) and molar ratios of nitrogen (N) in polymer to phosphate (P) in pDNA (N/P = 30-40), with the use of a novel transfection enhancer that facilitates endosomal escape and nuclear trafficking, the efficiency of gene delivery was increased significantly 24 h post transfection. The present study demonstrated an appropriately optimized protocol that enabled the utility of a novel cationic polymer blend with a mixture of fusogenic lipids and a histone deacetylate inhibitor in non-viral transfection, thereby providing an attractive alternative to costly commercial gene carriers.
阳离子聚合物仍然是非病毒基因转移的有吸引力的工具。这些载体的有效性依赖于将质粒 DNA(pDNA)递送到细胞核的能力。虽然我们之前已经证明了木质素-PGEA-PEGMA 作为非病毒基因传递载体的潜力,但在转染后观察到细胞表型和细胞毒性的改变。本研究旨在探索基于木质素-PGEA-PEGMA 的基因传递系统的高效率和低毒性的转染条件。通过使用离心方案,可以显著降低细胞毒性,该方案能够快速沉积 DNA 复合物。离心后更换培养基可使细胞接触到多余聚合物的暴露最小化,这些聚合物对细胞有毒。在优化的 DNA 量(500-750ng)和聚合物中氮(N)与 pDNA 中磷(P)的摩尔比(N/P=30-40)下,使用一种新的转染增强剂促进内涵体逃逸和核运输,可在转染后 24 小时内显著提高基因传递效率。本研究展示了一种经过适当优化的方案,该方案可实现新型阳离子聚合物混合物与融合脂质和组蛋白去乙酰化抑制剂的混合物在非病毒转染中的应用,从而为昂贵的商业基因载体提供了有吸引力的替代方案。