材料科学
骨肉瘤
自愈水凝胶
再生(生物学)
生物医学工程
生物高聚物
表面等离子共振
体内
光热治疗
纳米技术
癌症研究
纳米颗粒
医学
复合材料
生物技术
高分子化学
生物
细胞生物学
聚合物
作者
Cairong Xiao,Renxian Wang,Rumin Fu,Peng Yu,Jianxun Guo,Guangping Li,Zhengao Wang,Honggang Wang,Jing‐Jun Nie,Weifeng Liu,Jinxia Zhai,Changhao Li,Chunlin Deng,Dafu Chen,Lei Zhou,Chengyun Ning
标识
DOI:10.1016/j.bioactmat.2024.01.003
摘要
Preventing local tumor recurrence while promoting bone tissue regeneration is an urgent need for osteosarcoma treatment. However, the therapeutic efficacy of traditional photosensitizers is limited, and they lack the ability to regenerate bone. Here, a piezo-photo nanoheterostructure is developed based on ultrasmall bismuth/strontium titanate nanocubes (denoted as Bi/SrTiO3), which achieve piezoelectric field-driven fast charge separation coupling with surface plasmon resonance to efficiently generate reactive oxygen species. These hybrid nanotherapeutics are integrated into injectable biopolymer hydrogels, which exhibit outstanding anticancer effects under the combined irradiation of NIR and ultrasound. In vivo studies using patient-derived xenograft models and tibial osteosarcoma models demonstrate that the hydrogels achieve tumor suppression with efficacy rates of 98.6 % and 67.6 % in the respective models. Furthermore, the hydrogel had good filling and retention capabilities in the bone defect region, which exerted bone repair therapeutic efficacy by polarizing and conveying electrical stimuli to the cells under mild ultrasound radiation. This study provides a comprehensive and clinically feasible strategy for the overall treatment and tissue regeneration of osteosarcoma.
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