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磁性纳米颗粒修饰的多孔支架用于骨再生和光热治疗肿瘤。

Magnetic nanoparticles modified-porous scaffolds for bone regeneration and photothermal therapy against tumors.

机构信息

The Education Ministry Key Lab of Resource Chemistry and Shanghai Key Laboratory of Rare Earth Functional Materials, Shanghai Normal University, Shanghai 200234, China.

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

出版信息

Nanomedicine. 2018 Apr;14(3):811-822. doi: 10.1016/j.nano.2017.12.025. Epub 2018 Feb 13.

Abstract

For effectively treating tumor related-bone defects, design and fabrication of multifunctional biomaterials still remain a great challenge. Herein, we firstly fabricated magnetic SrFeO nanoparticles modified-mesoporous bioglass (BG)/chitosan (CS) porous scaffold (MBCS) with excellent bone regeneration and antitumor function. The as-produced magnetic field from MBCS promoted the expression levels of osteogenic-related genes (OCN, COL1, Runx2 and ALP) and the new bone regeneration by activated BMP-2/Smad/Runx2 pathway. Moreover, the SrFeO nanoparticles in MBCS improved the photothermal conversion property. Under the irradiation of near-infrared (NIR) laser, the elevated temperatures of tumors co-cultured with MBCS triggered tumor apoptosis and ablation. As compared with the pure scaffold group, MBCS/NIR group possessed the excellent antitumor efficacy against osteosarcoma via the hyperthermia ablation. Therefore, the multifunctional MBCS with excellent bone regeneration and photothermal therapy functions has a great application for treating the tumor-related bone defects.

摘要

为了有效治疗肿瘤相关的骨缺损,设计和制备多功能生物材料仍然是一个巨大的挑战。在此,我们首次制备了具有优异的骨再生和抗肿瘤功能的磁性 SrFeO 纳米粒子修饰的介孔生物玻璃(BG)/壳聚糖(CS)多孔支架(MBCS)。MBCS 产生的磁场通过激活 BMP-2/Smad/Runx2 通路促进成骨相关基因(OCN、COL1、Runx2 和 ALP)的表达水平和新骨再生。此外,MBCS 中的 SrFeO 纳米粒子提高了光热转换性能。在近红外(NIR)激光照射下,与 MBCS 共培养的肿瘤的升高温度引发肿瘤细胞凋亡和消融。与纯支架组相比,MBCS/NIR 组通过热疗消融对骨肉瘤具有优异的抗肿瘤疗效。因此,具有优异的骨再生和光热治疗功能的多功能 MBCS 为治疗肿瘤相关的骨缺损提供了巨大的应用前景。

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