R&D Center for Membrane Technology and Department of Chemical Engineering, Chung Yuan Christian University , Chung-Li, Taoyuan 320, Taiwan.
School of Chemical Engineering and Chemistry, Mapúa Institute of Technology , Intramuros, Manila 1002, Philippines.
Langmuir. 2017 Feb 28;33(8):1914-1926. doi: 10.1021/acs.langmuir.6b03685. Epub 2017 Feb 14.
Cationic vectors are ideal candidates for gene delivery thanks to their capability to carry large gene inserts and their scalable production. However, their cationic density gives rise to high cytotoxicity. We present the proper designed core-shell polyplexes made of either poly(ethylene imine) (PEI) or poly(2-dimethylamino ethyl methacrylate) (PDMAEMA) as the core and zwitterionic poly(acrylic acid)-block-poly(sulfobetaine methacrylate) (PAA-b-PSBMA) diblock copolymer as the shell. Gel retardation and ethidium bromide displacement assays were used to determine the PEI/DNA or PDMAEMA/DNA complexation. At neutral pH, the copolymer serves as a protective shell of the complex. As PSBMA is a nonfouling block, the shell reduced the cytotoxicity and enhanced the hemocompatibility (lower hemolysis activity, longer plasma clotting time) of the gene carriers. PAA segments in the copolymer impart pH sensitivity by allowing deshielding of the core in acidic solution. Therefore, the transfection efficiency of polyplexes at pH 6.5 was better than at pH 7.0, from β-galactosidase assay, and for all PAA-b-PSBMA tested. These results were supported by more favorable physicochemical properties in acidic solution (zeta potential, particle size, and interactions between the polymer and DNA). Thus, the results of this study offer a potential route to the development of efficient and nontoxic pH-sensitive gene carriers.
阳离子载体由于其携带大基因插入物的能力和可扩展的生产能力,是基因传递的理想候选物。然而,其阳离子密度会导致高细胞毒性。我们提出了由聚(亚乙基亚胺)(PEI)或聚(2-二甲氨基乙基甲基丙烯酸酯)(PDMAEMA)作为核,两性离子聚(丙烯酸)-嵌段-聚(磺酸甜菜碱甲基丙烯酸酯)(PAA-b-PSBMA)两亲嵌段共聚物作为壳的适当设计的核壳型聚电解质复合物。凝胶阻滞和溴化乙锭置换实验用于确定 PEI/DNA 或 PDMAEMA/DNA 的络合。在中性 pH 值下,共聚物作为复合物的保护壳。由于 PSBMA 是一种无污损的嵌段,因此壳降低了基因载体的细胞毒性并增强了其血液相容性(较低的溶血活性,更长的血浆凝固时间)。共聚物中的 PAA 段通过允许在酸性溶液中屏蔽核心来赋予 pH 敏感性。因此,从β-半乳糖苷酶测定来看,在 pH 6.5 时,与在 pH 7.0 时相比,多聚物的转染效率更好,并且对于所有测试的 PAA-b-PSBMA 都是如此。这些结果得到了在酸性溶液中更有利的物理化学性质(zeta 电位、粒径以及聚合物与 DNA 之间的相互作用)的支持。因此,本研究的结果为开发高效、无毒的 pH 敏感基因载体提供了一条潜在途径。