Key Laboratory of Drug Targeting and Drug Delivery Systems, West China School of Pharmacy, and State Key Laboratory of Biotherapy/Collaborative Innovation Center of Biotherapy, West China Hospital, Sichuan University, No. 17, Block 3, Southern Renmin Road, Chengdu 610041, China.
Key Laboratory of Drug Targeting and Drug Delivery Systems, West China School of Pharmacy, and State Key Laboratory of Biotherapy/Collaborative Innovation Center of Biotherapy, West China Hospital, Sichuan University, No. 17, Block 3, Southern Renmin Road, Chengdu 610041, China.
Biomaterials. 2015 Jan;37:425-35. doi: 10.1016/j.biomaterials.2014.10.007. Epub 2014 Oct 29.
Glioma is still hard to be treated due to their complex microenvironment. In this study, a gold nanoparticle-based delivery system was developed. The system, An-PEG-DOX-AuNPs, was loaded with doxorubicin (DOX) through hydrazone, an acid-responsive linker, and was functionalized with angiopep-2, a specific ligand of low density lipoprotein receptor-related protein-1 (LRP1), which could mediate the system to penetrate blood brain barrier and target to glioma cells. The particle size of An-PEG-DOX-AuNPs was 39.9 nm with a zeta potential of -19.3 mV, while the DOX loading capacity was 9.7%. In vitro, the release of DOX from DOX-AuNPs was pH-dependent. At lower pH values, especially 5.0 and 6.0, release of DOX was much quicker than that at pH 6.8 and 7.4. After coating with PEG, the acid-responsive release of DOX from PEG-DOX-AuNPs was almost the same as that from DOX-AuNPs. Cellular uptake study showed obviously higher intensity of intracellular An-PEG-DOX-AuNPs compared with PEG-DOX-AuNPs. In vivo, An-PEG-DOX-AuNPs could distribute into glioma at a higher intensity than that of PEG-DOX-AuNPs and free DOX. Correspondingly, glioma-bearing mice treated with An-PEG-DOX-AuNPs displayed the longest median survival time, which was 2.89-fold longer than that of saline. In conclusion, An-PEG-DOX-AuNPs could specifically deliver and release DOX in glioma and significantly expand the median survival time of glioma-bearing mice.
脑胶质瘤由于其复杂的微环境仍然难以治疗。在这项研究中,开发了一种基于金纳米粒子的递药系统。该系统 An-PEG-DOX-AuNPs 通过腙键(一种酸响应性连接物)装载阿霉素(DOX),并被血管生成肽-2(一种 LDL 受体相关蛋白-1(LRP1)的特异性配体)功能化,可介导该系统穿透血脑屏障并靶向脑胶质瘤细胞。An-PEG-DOX-AuNPs 的粒径为 39.9nm,zeta 电位为-19.3mV,而 DOX 的载药量为 9.7%。体外,DOX 从 DOX-AuNPs 的释放呈 pH 依赖性。在较低的 pH 值下,特别是在 5.0 和 6.0 时,DOX 的释放速度比在 pH6.8 和 7.4 时快得多。用 PEG 包覆后,PEG-DOX-AuNPs 中 DOX 的酸响应释放几乎与 DOX-AuNPs 相同。细胞摄取研究表明,与 PEG-DOX-AuNPs 相比,细胞内 An-PEG-DOX-AuNPs 的强度明显更高。在体内,An-PEG-DOX-AuNPs 能够以比 PEG-DOX-AuNPs 和游离 DOX 更高的强度分布到脑胶质瘤中。相应地,用 An-PEG-DOX-AuNPs 治疗的荷瘤小鼠的中位生存时间最长,比生理盐水组延长了 2.89 倍。总之,An-PEG-DOX-AuNPs 可以特异性地向脑胶质瘤递药和释放 DOX,并显著延长荷瘤小鼠的中位生存时间。