首页> 外文期刊>Biomaterials >Enhanced gene transfection and serum stability of polyplexes by PDMAEMA-polysulfobetaine diblock copolymers.
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Enhanced gene transfection and serum stability of polyplexes by PDMAEMA-polysulfobetaine diblock copolymers.

机译:PDMAEMA-聚磺基甜菜碱二嵌段共聚物可增强基因复合物的基因转染和血清稳定性。

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Polyethylene glycol or phosphorylcholine is often introduced into polycationic non-viral vectors to inhibit the non-specific protein adsorption. However the ability of vectors to condense DNA and the cellular internalization of complexes are unavoidably compromised. In this work, a polysulfobetaine-cationic methacrylate copolymer: 2-(dimethylamino) ethyl methacrylate-block-(N-(3-(methacryloylamino) propyl)-N,N-dimethyl-N-(3-sulfopropyl) ammonium hydroxide) (PDMAEMA-b-PMPDSAH) diblock copolymer was synthesized via atomic transfer radical polymerization method and investigated as a new non-viral vector for gene delivery. Incorporation of polysulfobetaine into cationic methacrylate retained a better DNA condensation capability. MTT assays revealed that the cytotoxicity of PDMAEMA(200)-PMPDSAH(n) copolymer was lower than that of PDMAEMA(200). PDMAEMA(200)-PMPDSAH(80) which was much superior to its homopolymer in mediating gene transfection demonstrated comparable efficiency to PEI25 kDa at a weight ratio of 8 in the presence of 10% serum. At higher serum contents, the transfection of PDMAEMA(200) and PEI25 kDa was deteriorated, whereas PDMAEMA(200)-PMPDSAH(80) still retained better transfection efficiency, 4-5 fold more effective than PEI25 kDa. For the sake of comparative study, we synthesized structurally similar copolymer from DMAEMA and 2-methacryloyloxyethyl phosphorylcholine, PDMAEMA(200)-PMPC(80). PDMAEMA(200)-PMPDSAH(80) exhibited much higher gene transfer levels than PDMAEMA(200)-PMPC(80) under the same conditions. The results of flow cytometry indicated that highly hydrophilic MPC block profoundly impeded the cellular internalization of nanocomplexes; in contrast, incorporation of polysulfobetaine remained the increased cellular uptake. Differential scanning calorimetry assay of thermodynamic phase transition of dipalmitoyl-sn-glycero-3-phosphocholine(DPPC) induced by polymer vectors demonstrated that MPC only marginally contributed to the perturbation of DPPC; polysulfobetaine facilitated more evident perturbation of DPPC bilayer instead, an indication that polysulfobetaine units could aid in the endocytosis of nanocomplexes.
机译:经常将聚乙二醇或磷酸胆碱引入聚阳离子非病毒载体中,以抑制非特异性蛋白质的吸附。然而,载体缩合DNA的能力和复合物的细胞内在化不可避免地受到损害。在这项工作中,聚磺基甜菜碱-阳离子甲基丙烯酸酯共聚物:甲基丙烯酸2-(二甲氨基)乙酯-嵌段-(N-(3-(甲基丙烯酰氨基)丙基)-N,N-二甲基-N-(3-磺丙基)铵)(通过原子转移自由基聚合法合成了PDMAEMA-b-PMPDSAH)二嵌段共聚物,并将其作为一种新的非病毒载体用于基因传递。将聚磺基甜菜碱掺入阳离子甲基丙烯酸酯中保留了更好的DNA缩合能力。 MTT分析显示PDMAEMA(200)-PMPDSAH(n)共聚物的细胞毒性低于PDMAEMA(200)。 PDMAEMA(200)-PMPDSAH(80)在介导基因转染方面远优于其均聚物,在存在10%血清的情况下,其重量比为8时,其效率可与PEI25 kDa媲美。在较高的血清含量下,PDMAEMA(200)和PEI25 kDa的转染会变差,而PDMAEMA(200)-PMPDSAH(80)仍保留更好的转染效率,比PEI25 kDa的转染效率高4-5倍。为了进行比较研究,我们从DMAEMA和2-甲基丙烯酰氧基乙基磷酰胆碱PDMAEMA(200)-PMPC(80)合成了结构相似的共聚物。在相同条件下,PDMAEMA(200)-PMPDSAH(80)表现出比PDMAEMA(200)-PMPC(80)高得多的基因转移水平。流式细胞仪检测结果表明,高度亲水的MPC阻滞剂严重阻碍了纳米复合物的细胞内在化。相反,多磺基甜菜碱的掺入仍然增加了细胞摄取。聚合物载体诱导的二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)热力学相变的差示扫描量热法分析表明,MPC仅对DPPC的扰动有所贡献。相反,多磺基甜菜碱促进了DPPC双层的更明显的扰动,这表明多磺基甜菜碱单元可以帮助纳米复合物的内吞作用。

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