Theranostic Macromolecules Research Center, Department of Polymer Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea.
Bioconjug Chem. 2011 Oct 19;22(10):1924-31. doi: 10.1021/bc2000963. Epub 2011 Sep 22.
Poly(ethylene glycol)-b-poly(γ-benzyl L-glutamate)s bearing the disulfide bond (PEG-SS-PBLGs), which is specifically cleavable in intracellular compartments, were prepared via a facile synthetic route as a potential carrier of camptothecin (CPT). Diblock copolymers with different lengths of PBLG were synthesized by ring-opening polymerization of benzyl glutamate N-carboxy anhydride in the presence of a PEG macroinitiator (PEG-SS-NH(2)). Owing to their amphiphilic nature, the copolymers formed spherical micelles in an aqueous condition, and their particle sizes (20-125 nm in diameter) were dependent on the block length of PBLG. Critical micelle concentrations of the copolymers were in the range 0.005-0.065 mg/mL, which decreased as the block length of PBLG increased. CPT, chosen as a model anticancer drug, was effectively encapsulated up to 12 wt % into the hydrophobic core of the micelles by the solvent casting method. It was demonstrated by the in vitro optical imaging technique that the fluorescence signal of doxorubicin, quenched in the PEG-SS-PBLG micelles, was highly recovered in the presence of glutathione (GSH), a tripeptide reducing disulfide bonds in the cytoplasm. The micelles released CPT completely within 20 h under 10 mM GSH, whereas only 40% of CPT was released from the micelles in the absence of GSH. From the in vitro cytotoxicity test, it was found that CPT-loaded PEG-SS-PBLG micelles showed higher toxicity to SCC7 cancer cells than CPT-loaded PEG-b-PBLG micelles without the disulfide bond. Microscopic observation demonstrated that the disulfide-containing micelle could effectively deliver the drug into nuclei of SCC7 cells. These results suggest that PEG-SS-PBLG diblock copolymer is a promising carrier for intracellular delivery of CPT.
聚乙二醇-b-聚(γ-苄基 L-谷氨酸酯)带有二硫键(PEG-SS-PBLGs),可以在细胞内环境中特异性断裂,通过一种简便的合成途径制备,作为喜树碱(CPT)的潜在载体。在 PEG 大分子引发剂(PEG-SS-NH(2))存在下,通过开环聚合苯丙氨酸 N-羧基酐合成了不同长度的 PBLG 两亲嵌段共聚物。由于其两亲性,共聚物在水介质中形成球形胶束,其粒径(直径 20-125nm)取决于 PBLG 的嵌段长度。共聚物的临界胶束浓度在 0.005-0.065mg/mL 范围内,随着 PBLG 嵌段长度的增加而降低。CPT 被选为模型抗癌药物,通过溶剂浇铸法有效包封到胶束的疏水性核中,最高可达 12wt%。体外光学成像技术表明,在细胞质中还原二硫键的三肽谷胱甘肽存在的情况下,胶束中阿霉素的荧光信号得到了高度恢复。在 10mM GSH 存在下,胶束在 20h 内完全释放 CPT,而在没有 GSH 的情况下,只有 40%的 CPT 从胶束中释放。体外细胞毒性试验发现,负载 CPT 的 PEG-SS-PBLG 胶束对 SCC7 癌细胞的毒性比没有二硫键的负载 CPT 的 PEG-b-PBLG 胶束高。显微镜观察表明,含有二硫键的胶束可以有效地将药物递送到 SCC7 细胞的细胞核中。这些结果表明,PEG-SS-PBLG 两亲嵌段共聚物是一种有前途的 CPT 细胞内递送载体。