Department of Rehabilitation, Shanghai General Hospital, Shanghai Jiaotong University, Shanghai 200080, China,
Department of Rehabilitation, Shanghai Sunshine Rehabilitation Center, Yangzhi Affiliated Rehabilitation Hospital of Tongji University, Shanghai 201209, China.
Int J Nanomedicine. 2018 Nov 16;13:7607-7621. doi: 10.2147/IJN.S181681. eCollection 2018.
Integration of several types of therapeutic agents into one nanoplatform to enhance treatment efficacy is being more widely used for cancer therapy.
Herein, a biocompatible polydopamine (PDA)-coated MoSe-wrapped doxorubicin (DOX)-loaded hollow mesoporous silica nanoparticles (HMSNs) nanoplatform (PM@HMSNs-DOX) was fabricated for dual-sensitive drug release and chemo-photothermal therapy for enhancing the therapeutic effects on breast cancer. The HMSNs were obtained by a "structural difference-based selective etching" strategy and served as the drug carrier, exhibiting a high DOX loading capacity of 427 mg/g HMSNs-NH, and then wrapped with PDA-coated MoSe layer to form PM@HMSNs-DOX. Various techniques proved the successful fabrication of the nanocomposites.
The formed PM@HMSNs-DOX nanocomposites exhibited good biocompatibility, good stability, and super-additive photothermal conversion efficiency due to the cooperation of MoSe and PDA. Simultaneously, the pH/near-infrared-responsive drug release profile was observed, which could enhance the synergistic therapeutic anticancer effect. The antitumor effects of PM@HMSNs-DOX were evaluated both in vitro and in vivo, demonstrating that the synergistic therapeutic efficacy was significantly superior to any monotherapy. Also, in vivo pharmacokinetics studies showed that PM@HMSNs-DOX had a much longer circulation time than free DOX. In addition, in vitro and in vivo toxicity studies certified that PM@HMSNs are suitable as biocompatible agents.
Our nanoplatform loaded with DOX displays pH/near-infrared-induced chemotherapy and excellent photothermal therapy, which hold great potential for cancer treatment.
将多种治疗剂整合到一个纳米平台中以增强治疗效果,这种方法正越来越多地被用于癌症治疗。
本文构建了一种生物相容性的聚多巴胺(PDA)包覆 MoSe 包裹阿霉素(DOX)负载的中空介孔硅纳米粒子(HMSNs)纳米平台(PM@HMSNs-DOX),用于双重敏感药物释放和化学-光热治疗,以增强对乳腺癌的治疗效果。通过“基于结构差异的选择性刻蚀”策略获得 HMSNs,作为药物载体,其 DOX 负载量高达 427mg/g HMSNs-NH,然后用 PDA 包覆的 MoSe 层包裹,形成 PM@HMSNs-DOX。各种技术证明了纳米复合材料的成功制备。
形成的 PM@HMSNs-DOX 纳米复合材料由于 MoSe 和 PDA 的协同作用,表现出良好的生物相容性、良好的稳定性和超附加光热转换效率。同时,观察到 pH/近红外响应的药物释放谱,可以增强协同治疗抗癌效果。在体外和体内评估了 PM@HMSNs-DOX 的抗肿瘤作用,结果表明协同治疗效果明显优于任何单一疗法。此外,体内药代动力学研究表明,PM@HMSNs-DOX 的循环时间比游离 DOX 长得多。此外,体外和体内毒性研究证明 PM@HMSNs 适合作为生物相容性试剂。
负载 DOX 的我们的纳米平台显示出 pH/近红外诱导的化学疗法和优异的光热疗法,为癌症治疗提供了巨大的潜力。