复合数
自愈水凝胶
骨愈合
活力测定
再生(生物学)
生物医学工程
基质(化学分析)
材料科学
复合材料
化学
化学工程
细胞
外科
细胞生物学
色谱法
医学
高分子化学
生物化学
工程类
生物
作者
Shengjie Jiang,Jing Hua,Yu Zhuang,Jinjie Cui,Zeyu Fu,Dejian Li,Cancan Zhao,Usman Liaqat,Kaili Lin
标识
DOI:10.1016/j.carbpol.2024.121933
摘要
Minimally invasive, efficient, and satisfactory treatment for irregular and lacunar bone defects is still a challenge. Alginate hydrogels serve as promising stem cell (SC) delivery systems for bone regeneration but are limited by low cellular viability, poor osteogenic differentiation, and insufficient mechanical support. Herein, we developed a BMSCs-laden mechanically reinforced bioactive sodium alginate composite hydrogel microspheres (BCHMs) system via a microfluidic method that possesses 1) a uniform size and good injectability to meet clinical bone defects with complex shapes, 2) high cellular viability maintenance and further osteogenic induction capacity, and 3) improved mechanical properties. As the main matrix, the sodium alginate hydrogel maintains the high viability of encapsulated BMSCs and efficient substance exchange. Enhanced mechanical properties and osteogenic differentiation of the BCHMs in vitro were observed with xonotlite (Ca6Si6O17(OH)2, CSH) nanowires incorporated. Furthermore, BCHMs with 12.5 % CSH were injected into rat femoral bone defects, and satisfactory in situ regeneration outcomes were observed. Overall, it is believed that BCHMs expand the application of polysaccharide science and provide a promising injectable bone substitute for minimally invasive bone repair.
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