首页> 外文期刊>Acta biomaterialia >Multiarm cationic star polymers by atom transfer radical polymerization from β-cyclodextrin cores: Influence of arm number and length on gene delivery
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Multiarm cationic star polymers by atom transfer radical polymerization from β-cyclodextrin cores: Influence of arm number and length on gene delivery

机译:β-环糊精核原子转移自由基聚合的多臂阳离子星形聚合物:臂数和臂长对基因传递的影响

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Controlled β-cyclodextrin (β-CD) core-based cationic star polymers have attracted considerable attention as non-viral gene carriers. Atom transfer radical polymerization (ATRP) could be readily used to produce the star-shaped polymers. The precise control of the number of initiation sites on the multifunctional core was of crucial importance to the investigation of the structure-property relationship of the functional star gene carriers. Herein, the controlled multiarm star polymers consisting of a β-CD core and various arm lengths of poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) were prepared via ATRP from the chloroacetylated β-CD with well-designed initiation sites. Generally, these star polycations can condense plasmid DNA into 100-150 nm nanoparticles with positive zeta potentials of 30-40 mV at N/P ratios (star polymer to DNA ratios) of 17 or higher. The effects of arm numbers and lengths on gene delivery were investigated in detail. With a fixed length of the PDMAEMA arm, the fewer the number of arms, the lower the toxicity. The star polycations with suitable arm numbers possess the best transfection ability. On the other hand, with the fixed molecular weights, the shorter the arms, the lower the toxicity. The polymers with 21 arms possess the lowest transfection efficiency.
机译:作为非病毒基因载体,基于β-环糊精(β-CD)核的受控阳离子星形聚合物已经引起了相当大的关注。原子转移自由基聚合(ATRP)可以很容易地用于生产星形聚合物。多功能核心上起始位点数目的精确控制对于研究功能性星形基因载体的结构-性质关系至关重要。在此,通过ATRP,由氯乙酰化的β-CD通过精心设计的起始位点,制备了由β-CD核和各种臂长的聚(2-(二甲基氨基)乙基甲基丙烯酸酯)(PDMAEMA)组成的受控多臂星形聚合物。通常,这些星形聚阳离子可以在N / P比率(星形聚合物与DNA比率)为17或更高的情况下,将质粒DNA凝聚成具有30-40 mV的正zeta电位的100-150 nm纳米粒子。详细研究了臂数和臂长对基因传递的影响。 PDMAEMA臂的长度固定时,臂数越少,毒性越低。具有合适臂数的星形聚阳离子具有最佳的转染能力。另一方面,分子量固定时,臂越短,毒性越低。具有21个臂的聚合物具有最低的转染效率。

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