Huang Yushu, Gao Ya, Chen Tiandong, Xu Yanyun, Lu Wei, Yu Jiahui, Xiao Yi, Liu Shiyuan
Shanghai Engineering Research Center of Molecular Therapeutics and New Drug Development, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, PR China.
Department of Radiology and Nuclear Medicine, Changzheng Hospital, Naval Medical University, Shanghai 200003, PR China.
ACS Biomater Sci Eng. 2017 Dec 11;3(12):3364-3375. doi: 10.1021/acsbiomaterials.7b00618. Epub 2017 Oct 27.
The aim of this research is to develop a novel type of camptothecin (CPT) prodrug micelles bearing boronate ester bonds as a smart nanosystem with enhanced cellular uptake and controlled drug release based on diblock copolymer abbreviated as PEG-BC-PGlu-ss-CPT. Particularly, boronate ester bond was introduced to achieve acid-triggered de-PEGylation and succeeding boronic acid-mediated enhanced cellular uptake. Besides, CPT was conjugated to the prodrug monomer through a disulfide bond to realize reduction-responsive drug release. The resultant copolymer PEG-BC-PGlu-ss-CPT could self-assemble into spherical nanomicelles in water. The degradation half-life time of PEG-BC-PGlu-ss-CPT copolymer decreased sharply from 96.27 h to only 5.7 h with pH value decreasing from 7.4 to 5.0, indicating the acid-degradable potential, which corresponded to size change monitoring. The cumulative CPT release from prodrug micelles increased significantly from 8.5 ± 1.73 to 82.9 ± 2.29% with an increase of dithiothreitol (DTT) concentration from 20 μM to 10 mM at pH 7.4, illustrating the reduction-responsive drug release property of prodrug micelles. The half maximal inhibitory concentration (IC) value of prodrug micelles against HepG2 cells decreased from 1.06 to 0.68 μg/mL with the decrement of pH value from 7.4 to 6.0, proving that the utilization of boronate ester bonds was beneficial for enhancing antiproliferative activity. Interestingly, prodrug micelles exhibited enhanced cellular uptake ability against HepG2 cells compared to that of HL7702 cells, further confirming boronic acid-mediated enhanced endocytosis. In brief, this novel type of intelligent prodrug micelles possessed great potential as a smart nanosystem for antitumor drug delivery.
本研究的目的是开发一种新型的喜树碱(CPT)前药胶束,其带有硼酸酯键,作为一种智能纳米系统,基于简称为PEG-BC-PGlu-ss-CPT的二嵌段共聚物,具有增强的细胞摄取和可控的药物释放。特别地,引入硼酸酯键以实现酸触发的去PEG化以及随后硼酸介导的增强细胞摄取。此外,CPT通过二硫键与前药单体缀合,以实现还原响应性药物释放。所得共聚物PEG-BC-PGlu-ss-CPT可在水中自组装成球形纳米胶束。随着pH值从7.4降至5.0,PEG-BC-PGlu-ss-CPT共聚物的降解半衰期从96.27小时急剧降至仅5.7小时,表明其酸可降解潜力,这与尺寸变化监测结果相符。在pH 7.4条件下,随着二硫苏糖醇(DTT)浓度从20 μM增加到10 mM,前药胶束中CPT的累积释放量从8.5±1.73%显著增加到82.9±2.29%,说明前药胶束具有还原响应性药物释放特性。前药胶束对HepG2细胞的半数最大抑制浓度(IC)值随着pH值从7.4降至6.0而从1.06降至0.68 μg/mL,证明硼酸酯键的利用有利于增强抗增殖活性。有趣的是,与HL7702细胞相比,前药胶束对HepG2细胞表现出增强的细胞摄取能力,进一步证实了硼酸介导的增强内吞作用。简而言之,这种新型智能前药胶束作为一种用于抗肿瘤药物递送的智能纳米系统具有巨大潜力。