脚手架
材料科学
黑磷
生物矿化
纳米材料
骨肉瘤
纳米技术
再生(生物学)
3d打印
骨组织
制作
生物医学工程
癌症研究
医学
病理
生物
细胞生物学
古生物学
替代医学
光电子学
作者
Bowen Yang,Junhui Yin,Yu Chen,Shanshan Pan,Heliang Yao,Youshui Gao,Jianlin Shi
标识
DOI:10.1002/adma.201705611
摘要
With the ever-deeper understanding of nano-bio interactions and the development of fabrication methodologies of nanomaterials, various therapeutic platforms based on nanomaterials have been developed for next-generation oncological applications, such as osteosarcoma therapy. In this work, a black phosphorus (BP) reinforced 3D-printed scaffold is designed and prepared to provide a feasible countermeasure for the efficient localized treatment of osteosarcoma. The in situ phosphorus-driven, calcium-extracted biomineralization of the intra-scaffold BP nanosheets enables both photothermal ablation of osteosarcoma and the subsequent material-guided bone regeneration in physiological microenvironment, and in the meantime endows the scaffolds with unique physicochemical properties favoring the whole stepwise therapeutic process. Additionally, a corrugated structure analogous to Haversian canals is found on newborn cranial bone tissue of Sprague-Dawley rats, which may provide much inspiration for the future research of bone-tissue engineering.
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