中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Engineering 2D Mesoporous Silica@MXene-Integrated 3D-Printing Scaffolds for Combinatory Osteosarcoma Therapy and NO-Augmented Bone Regeneration

文献类型:期刊论文

作者Yang, QH; Yin, HH; Xu, TM; Zhu, DY; Yin, JH; Chen, YX; Yu, XW; Gao, JJ; Zhang, CQ; Chen, Y
刊名SMALL
出版日期2020-04-09
期号14
ISSN号1613-6810
DOI10.1002/smll.201906814
文献子类Article
英文摘要The rising concerns of the recurrence and bone deficiency in surgical treatment of malignant bone tumors have raised an urgent need of the advance of multifunctional therapeutic platforms for efficient tumor therapy and bone regeneration. Herein, the construction of a multifunctional biomaterial system is reported by the integration of 2D Nb2C MXene wrapped with S-nitrosothiol (R-SNO)-grafted mesoporous silica with 3D-printing bioactive glass (BG) scaffolds (MBS). The near infrared (NIR)-triggered photonic hyperthermia of MXene in the NIR-II biowindow and precisely controlled nitric oxide (NO) release are coordinated for multitarget ablation of bone tumors to enhance localized osteosarcoma treatment. The in situ formed phosphorus and calcium components degraded from BG scaffold promote bone-regeneration bioactivity, augmented by sufficient blood supply triggered by on-demand NO release. The tunable NO generation plays a crucial role in sequential adjuvant tumor ablation, combinatory promotion of coupled vascularization, and bone regeneration. This study demonstrates a combinatory osteosarcoma ablation and a full osseous regeneration as enabled by the implantation of MBS. The design of multifunctional scaffolds with the specific features of controllable NO release, highly efficient photothermal conversion, and stimulatory bone regeneration provides an intriguing biomaterial platform for the diversified treatment of bone tumors.
WOS关键词NITRIC-OXIDE ; SOFT-TISSUE ; MOUSE MODEL ; RELEASE ; NANOPARTICLES ; BIOMATERIALS ; CHEMOTHERAPY ; SURVIVAL ; SARCOMA ; PATHWAY
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
语种英语
出版者WILEY-V C H VERLAG GMBH
源URL[http://ir.sic.ac.cn/handle/331005/28282]  
专题中国科学院上海硅酸盐研究所
推荐引用方式
GB/T 7714
Yang, QH,Yin, HH,Xu, TM,et al. Engineering 2D Mesoporous Silica@MXene-Integrated 3D-Printing Scaffolds for Combinatory Osteosarcoma Therapy and NO-Augmented Bone Regeneration[J]. SMALL,2020(14).
APA Yang, QH.,Yin, HH.,Xu, TM.,Zhu, DY.,Yin, JH.,...&Gao, YS.(2020).Engineering 2D Mesoporous Silica@MXene-Integrated 3D-Printing Scaffolds for Combinatory Osteosarcoma Therapy and NO-Augmented Bone Regeneration.SMALL(14).
MLA Yang, QH,et al."Engineering 2D Mesoporous Silica@MXene-Integrated 3D-Printing Scaffolds for Combinatory Osteosarcoma Therapy and NO-Augmented Bone Regeneration".SMALL .14(2020).

入库方式: OAI收割

来源:上海硅酸盐研究所

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