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Biomineralization inspired 3D printed bioactive glass nanocomposite scaffolds orchestrate diabetic bone regeneration by remodeling micromilieu

Bioact Mater. 2023-02; 
Zeqian Xu, Xuanyu Qi, Minyue Bao, Tian Zhou, Junfeng Shi, Zhiyan Xu, Mingliang Zhou, Aldo R Boccaccini, Kai Zheng, Xinquan Jiang
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摘要

Type II diabetes mellitus (TIIDM) remains a challenging clinical issue for both dentists and orthopedists. By virtue of persistent hyperglycemia and altered host metabolism, the pathologic diabetic micromilieu with chronic inflammation, advanced glycation end products accumulation, and attenuated biomineralization severely impairs bone regeneration efficiency. Aiming to "remodel" the pathologic diabetic micromilieu, we 3D-printed bioscaffolds composed of Sr-containing mesoporous bioactive glass nanoparticles (Sr-MBGNs) and gelatin methacrylate (GelMA). Sr-MBGNs act as a biomineralization precursor embedded in the GelMA-simulated extracellular matrix and release Sr, Ca, and Si ions enhancing osteogenic, angiogen... More

关键词

3D printing, Biomineralization, Enzymatic cross-links, Sr-containing mesoporous bioactive glass nanoparticles, Type II Diabetes mellitus
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