Mol Pharm. 2019 Feb 4;16(2):655-668. doi: 10.1021/acs.molpharmaceut.8b00963. Epub 2019 Jan 18.
Development of highly effective nonviral gene delivery vectors for transfection of diverse cell populations remains a challenge despite utilization of both rational and combinatorial driven approaches to nanoparticle engineering. In this work, multifunctional polyesters are synthesized with well-defined branching structures via A2 + B2/B3 + C1 Michael addition reactions from small molecule acrylate and amine monomers and then end-capped with amine-containing small molecules to assess the influence of polymer branching structure on transfection. These Branched poly(Ester Amine) Quadpolymers (BEAQs) are highly effective for delivery of plasmid DNA to retinal pigment epithelial cells and demonstrate multiple improvements over previously reported leading linear poly(beta-amino ester)s, particularly for volume-limited applications where improved efficiency is required. BEAQs with moderate degrees of branching are demonstrated to be optimal for delivery under high serum conditions and low nanoparticle doses further relevant for therapeutic gene delivery applications. Defined structural properties of each polymer in the series, including tertiary amine content, correlated with cellular transfection efficacy and viability. Trends that can be applied to the rational design of future generations of biodegradable polymers are elucidated.
尽管已经采用了合理的和组合驱动的方法来进行纳米粒子工程设计,但开发高效的非病毒基因传递载体以转染多种细胞群体仍然是一个挑战。在这项工作中,通过小分子丙烯酸酯和胺单体的 A2 + B2/B3 + C1 Michael 加成反应,合成了具有明确支化结构的多功能聚酯,然后用含胺的小分子封端,以评估聚合物支化结构对转染的影响。这些支化聚(酯胺)四聚物(BEAQ)对于向视网膜色素上皮细胞递送质粒 DNA 非常有效,并且与以前报道的领先的线性聚(β-氨基酯)相比,表现出多种改进,特别是对于需要提高效率的体积有限的应用。在高血清条件和低纳米颗粒剂量下,适度支化程度的 BAEQ 被证明是最佳的递送条件,这对于治疗性基因传递应用也很重要。该系列中每种聚合物的明确结构特性,包括叔胺含量,与细胞转染效率和细胞活力相关。阐明了可应用于未来可生物降解聚合物的合理设计的趋势。