Jiangsu Key Laboratory for Supramolecular Medicinal Materials and Applications, College of Life Sciences, Nanjing Normal University , Nanjing 210046, People's Republic of China.
ACS Appl Mater Interfaces. 2015 Feb 25;7(7):3888-901. doi: 10.1021/am508340m. Epub 2015 Feb 11.
In this study, we successfully synthesized d-α-tocopheryl polyethylene glycol 2000 succinate (TPGS2k) and prepared TPGS2k-modified poly(lactic-co-glycolic acid) nanoparticles (TPGS2k/PLGA NPs) loaded with 7-ethyl-10-hydroxycamptothecin (SN-38), designated TPGS2k/PLGA/SN-38 NPs. Characterization measurements showed that TPGS2k/PLGA/SN-38 NPs displayed flat and spheroidal particles with diameters of 80-104 nm. SN-38 was encapsulated in TPGS2k emulsified PLGA NPs with the entrapment efficiency and loading rates of SN-38 83.6 and 7.85%, respectively. SN-38 could release constantly from TPGS2k/PLGA/SN-38 NPs in vitro. TPGS2k/PLGA/SN-38 NPs induced significantly higher cytotoxicity on A549 cells and the multidrug resistance (MDR) cell line (A549/DDP cells and A549/Taxol cells) compared with free SN-38. Further studies on the mechanism of the NPs in increasing the death of MDR cells showed that following the SN-38 releasing into cytoplasm the remaining TPGS2k/PLGA NPs could reverse the P-gp mediated MDR via interfering with the structure and function of mitochondria and rather than directly inhibiting the enzymatic activity of P-gp ATPase. Therefore, TPGS2k/PLGA NPs can reduce the generation of ATP and the release of energy for the requisite of P-gp efflux transporters. The results indicated that TPGS2k/PLGA NPs could become the nanopharmaceutical materials with the capability to reversal MDR and improve anticancer effects of some chemotherapy drugs as P-gp substrates.
在这项研究中,我们成功合成了 d-α-生育酚聚乙二醇 2000 琥珀酸酯(TPGS2k),并制备了负载 7-乙基-10-羟基喜树碱(SN-38)的 TPGS2k 修饰的聚乳酸-羟基乙酸共聚物纳米粒(TPGS2k/PLGA NPs),命名为 TPGS2k/PLGA/SN-38 NPs。特征测量表明,TPGS2k/PLGA/SN-38 NPs 呈现平坦的球形颗粒,粒径为 80-104nm。SN-38 被包裹在 TPGS2k 乳化的 PLGA NPs 中,包封效率和 SN-38 的载药量分别为 83.6%和 7.85%。SN-38 可以从 TPGS2k/PLGA/SN-38 NPs 中持续体外释放。与游离 SN-38 相比,TPGS2k/PLGA/SN-38 NPs 对 A549 细胞和多药耐药(MDR)细胞系(A549/DDP 细胞和 A549/Taxol 细胞)诱导的细胞毒性显著更高。进一步研究 NP 增加 MDR 细胞死亡的机制表明,SN-38 释放到细胞质后,剩余的 TPGS2k/PLGA NPs 可以通过干扰线粒体的结构和功能来逆转 P-糖蛋白介导的 MDR,而不是直接抑制 P-糖蛋白 ATP 酶的酶活性。因此,TPGS2k/PLGA NPs 可以减少 ATP 的产生和 P-糖蛋白外排转运体所需的能量释放。结果表明,TPGS2k/PLGA NPs 可以成为逆转 MDR 和提高某些化疗药物作为 P-糖蛋白底物的抗癌作用的纳米药物材料。