Chemical Engineering, Arizona State University, ECG 301, Tempe, AZ 85287-6106, USA.
Biomaterials. 2010 Aug;31(22):5894-902. doi: 10.1016/j.biomaterials.2010.04.007. Epub 2010 May 8.
Polymer-mediated gene delivery is an attractive alternative to viral vectors, but is limited by low efficacies of transgene expression. We report that polymers possess differential efficacies for transfecting closely related human prostate cancer cells, which correlates with dramatically different intracellular fate of nanoscale cargo in these cells. Sequestration of nanoscale cargo (27 nm quantum dots and 150-250 nm polyplexes) at a single location near the microtubule organizing compartment (MTOC) in PC3-PSMA human prostate cancer cells correlated with lower polymer-mediated transgene expression compared to PC3 cells, which showed distributed localization throughout the cytoplasm. We show, for the first time, that treatment with the histone deacetylase 6 (HDAC6) inhibitor tubacin, which acetylates tubulin of microtubules in the cytoplasm, abolished quantum dot and polyplex sequestration at the perinuclear recycling compartment/microtubule organizing center (PNRC/MTOC) and increased polymer-mediated transgene expression by up to forty-fold compared to cells not treated with the HDAC6 inhibitor drug. Treatment with the class I and II HDAC inhibitor trichostatin A (TSA) demonstrated similar levels of transgene expression enhancement. These results indicate that mediators of intracellular trafficking can be employed to modulate nanoparticle fate and enhance the efficacy of nanoscale therapeutics in cells. Simultaneous use of high-efficacy polymers along with mediators of intracellular trafficking is an attractive synergistic strategy for enhancing polymer-mediated transgene expression.
聚合物介导的基因传递是一种有吸引力的替代病毒载体的方法,但由于转基因表达效率低而受到限制。我们报告说,聚合物在转染密切相关的人前列腺癌细胞方面具有不同的效率,这与这些细胞中纳米级货物的细胞内命运有很大的不同。纳米级货物(27nm 量子点和 150-250nm 多聚物)在靠近微管组织区室(MTOC)的单个位置被隔离(PC3-PSMA 人前列腺癌细胞)与聚合物介导的转基因表达相比,与 PC3 细胞相比,转基因表达较低,PC3 细胞在细胞质中表现出分布式定位。我们首次表明,用组蛋白去乙酰化酶 6(HDAC6)抑制剂 tubacin 处理,可使细胞质中的微管中的微管蛋白乙酰化,从而消除近核再循环区室/微管组织中心(PNRC/MTOC)中的量子点和多聚物隔离,并使聚合物介导的转基因表达增加高达 40 倍,与未用 HDAC6 抑制剂药物处理的细胞相比。用 I 类和 II 类 HDAC 抑制剂 Trichostatin A(TSA)处理也表现出类似水平的转基因表达增强。这些结果表明,细胞内运输的调节剂可以用来调节纳米颗粒的命运,并增强纳米级治疗在细胞中的疗效。同时使用高效聚合物和细胞内运输调节剂是增强聚合物介导的转基因表达的一种有吸引力的协同策略。