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Linear polycations by ring-opening polymerization as non-viral gene delivery vectors

机译:通过开环聚合的线性聚阳离子作为非病毒基因递送载体

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For a clinically effective non-viral gene delivery system, a non-toxic and highly efficient vector is of great importance. A series of linear cationic polymers were synthesized by the ring-opening polymerization between diglycidyl ethers and diamines. Their structure-activity relationships as gene delivery vectors were systematically studied. Besides the amino groups with various densities, these polymers have uniform distribution of hydroxyl groups, which were formed in the polymerization and may benefit their biocompatibility and serum-tolerance. These polymers have good DNA binding ability and could condense DNA into nanoparticles with proper sizes and zeta-potentials. MTT assay revealed that polyplexes formed from title polymers have lower cytotoxicity than that derived from PEI. Most of the polymers have higher transfection efficiency than 25kDa PEI in the invitro transfection experiments. Polymers prepared from diglycidyl ethers with less or no N atom (2a and 2b) gave dramatically decreased TE, indicating that secondary amine on the backbone is highly required for efficient gene transfection, and compound 2 may be a good building block in the design of cationic polymers for gene delivery. More importantly, these polymers showed much better serum tolerance. Unlike PEI, the transfection mediated by P5 was seldom affected by the presence of 10% serum. Cellular uptake and intracellular distribution studies also confirmed the good performance of P5 in the transfection process with serum.
机译:对于临床有效的非病毒基因递送系统,无毒且高效的载体非常重要。通过二缩水甘油醚和二胺之间的开环聚合反应,合成了一系列线性阳离子聚合物。对它们作为基因传递载体的构效关系进行了系统的研究。这些聚合物除了具有各种密度的氨基外,还具有在聚合过程中形成的羟基的均匀分布,并可能有利于其生物相容性和血清耐受性。这些聚合物具有良好的DNA结合能力,可以将DNA浓缩成具有适当大小和zeta电位的纳米颗粒。 MTT分析显示,由标题聚合物形成的多链体比由PEI衍生的多链体具有更低的细胞毒性。在体外转染实验中,大多数聚合物的转染效率均高于25kDa PEI。由具有较少或没有N原子的二缩水甘油醚制备的聚合物(2a和2b)大大降低了TE,表明有效基因转染非常需要骨架上的仲胺,化合物2可能是阳离子设计中的良好基础用于基因传递的聚合物。更重要的是,这些聚合物表现出更好的血清耐受性。与PEI不同,P5介导的转染很少受10%血清的影响。细胞摄取和细胞内分布研究也证实了P5在血清转染过程中的良好性能。

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