自愈水凝胶
再生(生物学)
肿胀 的
霍夫迈斯特系列
材料科学
二价
颅骨成形术
生物医学工程
颅骨
骨愈合
颅骨
生物物理学
离子
化学
高分子化学
外科
有机化学
复合材料
医学
细胞生物学
生物
冶金
作者
Ziying You,Yue Yu,Tie Hua Wang,Zhong Chen,Ding Xiong,Yu Shi,Zhenming Wang,Ling Ye
标识
DOI:10.1021/acsami.3c04729
摘要
Increased intracranial pressure after traumatic brain injury (TBI) is an urgent problem in clinical practice. A pliable hydrogel is preferred for cranioplasty applications after TBI since it can protect brain tissue and promote bone healing. Nevertheless, biohydrogels for cranial bone regeneration still face challenges of poor mechanical properties, large swelling ratios, and low osteogenesis activity. Herein, inspired by Hofmeister effects, biopolymer hydrogels composed of protein and polysaccharides were treated with a Hofmeister series including a series of monovalent and divalent anions. Our results reveal that the divalent anion-cross-linked biohydrogels exhibit stronger mechanical properties and lower swelling ratios compared with monovalent-anion treated gels. Intriguingly, the divalent HPO42– anion induced biohybrid hydrogels with excellent mechanical behaviors (3.7 ± 0.58 MPa, 484 ± 76.7 kPa, and 148.3 ± 6.85 kJ/m3), anti-swelling capability (16.7%), and gradual degradation ability, significantly stimulating osteogenic differentiation and in vivo cranial bone regeneration. Overall, this study may provide new insights into the design of biomimetic hydrogels for treating cranial bone defects after TBI.
科研通智能强力驱动
Strongly Powered by AbleSci AI