School of Pharmaceutical Science, Liaoning University, Shenyang, 110036, People's Republic of China.
Nanotechnology. 2022 Jun 1;33(34). doi: 10.1088/1361-6528/ac6fee.
To improve the shortcomings of narrow therapeutic range and low bioavailability of traditional preparations, a composite drug carrier that combines the advantages of biological carriers and synthetic carriers was prepared in this project. The biomimetic nano-delivery system outer membrane vesicles-polydopamine-mesoporous silica nanoparticle (OMVs-PDA-MSN-DOX) for oral administration is composed of OMVs ofas shell and doxorubicin-loaded MSN modified by PDA as core. Several characterization techniques thoroughly examined the nano-drug delivery system to confirm its surface morphology and chemical property. OMVs-PDA-MSN-DOX with a particle size of 150 nm showed significant cell selectivity and safety. We demonstrated that OMVs are capable of protecting pH-sensitive nanostructure from the oral route of administration in the short term. Importantly, OMVs-PDA-MSN-DOX could facilitate intestinal adhesion and improve DOX bioavailability. Overall, the OMVs-cloaked nanocarrier provides an efficient delivery platform for the oral targeting treatment of cancer with pH-sensitive nano-formulations.
为了改善传统制剂治疗窗窄和生物利用度低的缺点,本项目制备了一种将生物载体和合成载体优势结合的复合药物载体。仿生口服纳米递药系统外膜囊泡-聚多巴胺-介孔硅纳米粒(OMVs-PDA-MSN-DOX)由 OMVs 作为外壳,载阿霉素的 PDA 修饰的 MSN 作为内核组成。几种特征分析技术彻底检查了纳米递药系统,以确认其表面形态和化学性质。粒径为 150nm 的 OMVs-PDA-MSN-DOX 表现出显著的细胞选择性和安全性。我们证明了 OMVs 能够在短期内保护 pH 敏感的纳米结构免受口服途径给药的影响。重要的是,OMVs-PDA-MSN-DOX 能够促进肠道黏附并提高 DOX 的生物利用度。总体而言,OMVs 包裹的纳米载体为 pH 敏感的纳米制剂的癌症口服靶向治疗提供了高效的递药平台。