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工程 2D 介孔硅@MXene 集成 3D 打印支架用于组合骨肉瘤治疗和 NO 增强骨再生。

Engineering 2D Mesoporous Silica@MXene-Integrated 3D-Printing Scaffolds for Combinatory Osteosarcoma Therapy and NO-Augmented Bone Regeneration.

机构信息

Department of Orthopedic Surgery, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai, 200233, P. R. China.

State Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, P. R. China.

出版信息

Small. 2020 Apr;16(14):e1906814. doi: 10.1002/smll.201906814. Epub 2020 Feb 28.

DOI:10.1002/smll.201906814
PMID:32108432
Abstract

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 Nb C 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.

摘要

在恶性骨肿瘤的外科治疗中,复发和骨缺损的问题日益受到关注,这迫切需要开发多功能治疗平台来进行有效的肿瘤治疗和骨再生。本文通过整合二维 NbC MXene 包裹 S-亚硝基硫醇(RSNO)接枝介孔硅和 3D 打印生物活性玻璃(BG)支架(MBS),构建了一种多功能生物材料系统。在近红外-II 生物窗口中,MXene 的近红外(NIR)触发光热疗和精确控制的一氧化氮(NO)释放相协调,以多靶点消融骨肿瘤,增强局部骨肉瘤的治疗效果。BG 支架原位形成的磷钙成分降解,促进骨再生生物活性,同时按需释放的 NO 触发充足的血液供应,进一步增强其效果。可调的 NO 生成在顺序辅助肿瘤消融、血管化和骨再生的联合促进中起着关键作用。本研究通过植入 MBS,实现了骨肉瘤的联合消融和完全骨再生。这种具有可控性 NO 释放、高效光热转换和刺激骨再生等特点的多功能支架设计,为骨肿瘤的多样化治疗提供了一个有趣的生物材料平台。

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