Materials Research Laboratory, University of California, Santa Barbara, California 93106-5121, United States.
Biomacromolecules. 2012 Dec 10;13(12):4089-97. doi: 10.1021/bm301384y. Epub 2012 Nov 27.
Hybrid dendritic-linear block copolymers based on a 4-arm poly(ethylene glycol) (PEG) core were synthesized using an accelerated AB2/CD2 dendritic growth approach through orthogonal amine/epoxy and thiol-yne chemistries. The biological activity of these 4-arm and the corresponding 2-arm hybrid dendrimers revealed an enhanced, dendritic effect with an exponential increase in cell internalization concomitant with increasing amine end groups and low cytotoxicity. Furthermore, the ability of these hybrid dendrimers to induce endosomal escape combined with their facile and efficient synthesis makes them attractive platforms for gene transfection. The 4-arm-based dendrimer showed significantly improved DNA binding and gene transfection capabilities in comparison with the 2-arm derivative. These results combined with the MD simulation indicate a significant effect of both the topology of the PEG core and the multivalency of these hybrid macromolecules on their DNA binding and delivery capablities.
基于 4 臂聚乙二醇(PEG)核的杂化树枝状线性嵌段共聚物通过正交胺/环氧化物和硫醇-炔化学反应,采用加速 AB2/CD2 树枝状生长方法合成。这些 4 臂和相应的 2 臂杂化树枝状聚合物的生物活性显示出增强的树枝状效应,细胞内化呈指数增加,同时胺端基增加,细胞毒性低。此外,这些杂化树枝状聚合物诱导内涵体逃逸的能力,以及它们易于合成和高效的特点,使它们成为基因转染的有吸引力的平台。与 2 臂衍生物相比,基于 4 臂的树枝状聚合物显示出显著改善的 DNA 结合和基因转染能力。这些结果与 MD 模拟相结合表明,PEG 核的拓扑结构和这些杂化大分子的多价性对它们的 DNA 结合和递药能力有显著影响。