Fabricating polydopamine-coated MoSe2-wrapped hollow mesoporous silica nanoplatform for controlled drug release and chemo-photothermal therapy

被引:29
作者
Chai, Song [1 ]
Kan, Shifeng [1 ]
Sun, Ran [1 ]
Zhou, Ruijuan [1 ]
Sun, Yi [2 ]
Chen, Wenhua [1 ]
Yu, Bo [1 ,3 ]
机构
[1] Shanghai Jiao Tong Univ, Shanghai Gen Hosp, Dept Rehabil, 100 Haining Rd, Shanghai 200080, Peoples R China
[2] Tongji Univ, Yangzhi Affiliated Rehabil Hosp, Shanghai Sunshine Rehabil Ctr, Dept Rehabil, Shanghai 201209, Peoples R China
[3] Shanghai Sanda Univ, Sch Int Med Technol, Dept Rehabil Therapy, Shanghai 201209, Peoples R China
关键词
hollow mesoporous silica nanoparticles; MoSe2; polydopamine; chemo-photothermal therapy; RECENT PROGRESS; GRAPHENE OXIDE; CANCER; NANOPARTICLES; PLATFORM; CHEMOTHERAPY;
D O I
10.2147/IJN.S181681
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Background: Integration of several types of therapeutic agents into one nanoplatform to enhance treatment efficacy is being more widely used for cancer therapy. Methods: Herein, a biocompatible polydopamine (PDA)-coated MoSe2-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-NH2, and then wrapped with PDA-coated MoSe2 layer to form PM@HMSNs-DOX. Various techniques proved the successful fabrication of the nanocomposites. Results: The formed PM@HMSNs-DOX nanocomposites exhibited good biocompatibility, good stability, and super-additive photothermal conversion efficiency due to the cooperation of MoSe2 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. Conclusion: Our nanoplatform loaded with DOX displays pH/near-infrared-induced chemotherapy and excellent photothermal therapy, which hold great potential for cancer treatment.
引用
收藏
页码:7607 / 7621
页数:15
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