Luten Jordy, Akeroyd Niels, Funhoff Arjen, Lok Martin C, Talsma Herre, Hennink Wim E
Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Faculty of Pharmaceutical Sciences, Utrecht University, 3508 TB Utrecht, The Netherlands.
Bioconjug Chem. 2006 Jul-Aug;17(4):1077-84. doi: 10.1021/bc060068p.
Water-soluble polymers with hydrolyzable cationic side groups (structure of the monomers are shown in Figure 1) were synthesized and evaluated as DNA delivery systems. The polymers, except for pHPMA-NHEM, were able to condense plasmid DNA into positively charged nanosized particles. The rate of hydrolysis at 37 degrees C and pH 7.4 of the side groups differed widely; the fastest rate of hydrolysis was observed for HPMA-DEAE (half-life of 2 h), while HPMA-DMAPr had the lowest rate of hydrolysis (half-life of 70 h). In line with this, pHPMA-DEAE-based polyplexes showed the fastest destabilization of the polyplexes at 37 degrees C and pH 7.4. Polyplexes based on pHPMA-DEAE, pHPMA-DMAE, and pHPMA-MPPM showed release of intact DNA within 24, 48, and 48 h, respectively, after incubation at 37 degrees C and pH 7.4. PHPMA-DEAE and pHPMA-MPPM based polyplexes showed the highest transfection activity (almost twice as active as pEI). Importantly, the pHPMA-DEAE, pHPMA-MPPM, and pHPMA-BDMPAP polyplexes preserved their transfection activity in the presence of serum proteins. All polymers investigated showed a substantial lower in vitro cytotoxicity than pEI. In conclusion, pHPMA-based polyplexes are an attractive class of biodegradable vectors for nonviral gene delivery.
合成了带有可水解阳离子侧基的水溶性聚合物(单体结构见图1),并将其作为DNA递送系统进行评估。除了pHPMA-NHEM外,这些聚合物能够将质粒DNA浓缩成带正电荷的纳米颗粒。侧基在37℃和pH 7.4条件下的水解速率差异很大;HPMA-DEAE的水解速率最快(半衰期为2小时),而HPMA-DMAPr的水解速率最低(半衰期为70小时)。与此一致的是,基于pHPMA-DEAE的多聚体在37℃和pH 7.4条件下显示出最快的多聚体去稳定化。基于pHPMA-DEAE、pHPMA-DMAE和pHPMA-MPPM的多聚体在37℃和pH 7.4条件下孵育后,分别在24、48和48小时内显示出完整DNA的释放。基于PHPMA-DEAE和pHPMA-MPPM的多聚体显示出最高的转染活性(活性几乎是pEI的两倍)。重要的是,pHPMA-DEAE、pHPMA-MPPM和pHPMA-BDMPAP多聚体在存在血清蛋白的情况下仍保留其转染活性。所有研究的聚合物在体外的细胞毒性都比pEI低得多。总之,基于pHPMA的多聚体是一类有吸引力的用于非病毒基因递送的可生物降解载体。