材料表面的生物功能化策略及其对骨修复的生物效应启发

IF 1.6 Q4 ENGINEERING, BIOMEDICAL
Guowen Duan, Dongbiao Chang, Chengdong Zhang, Siyu Li, Xinyao Liu, Zian Wang, Long Chen, Jinsheng Li, Zhenfan Bai, Jie Weng
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引用次数: 0

摘要

由于创伤和疾病,骨缺损危及人类的健康生命。目前,骨缺损修复的金标准仍然是自体骨移植和异体骨移植。然而,其来源不足、潜在的疾病传播和免疫排斥等问题限制了其临床应用。因此,骨修复材料的开发在促进骨修复方面发挥着重要作用。作为材料与组织的界面,材料表面对植入后的反应起着重要作用,决定着缺损修复治疗的效果。随着表面工程和技术的发展,骨修复材料通过控制材料表面的成分、拓扑形态和结构等,赋予各种生物功能,从生物惰性发展到生物活性。受启发的材料表面生物功能化包括诱导成骨、促进血管生成、抗菌、免疫调节等能力,以及术后修复和治疗一体化。作者综述了生物材料表面的生物功能化及其对骨修复的启发生物效应,主要包括材料表面调节成骨的物理和化学特性,以及骨修复材料表面的功能策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biofunctionalisation strategies of material surface and the inspired biological effects for bone repair

Biofunctionalisation strategies of material surface and the inspired biological effects for bone repair

Due to trauma and disease, bone defects endanger the healthy life of human beings. At present, the gold standard for bone defect repair is still autologous bone transplantation and allogeneic bone transplantation. However, its insufficient source, potential disease transmission and immune rejection limit its clinical application. Therefore, the development of bone repair materials plays an important role in promoting bone repair. As the interface between material and tissue, the surface of the material plays an important role in the reaction after implantation, which determines the effectiveness of defect repair treatment. With the development of surface engineering and technology, bone repair materials have developed from biological inertia to biological activity by endowing various biological functions by controlling the composition, topological morphology and structure of the material surface etc. The inspired biofunctionalisation of material surface includes the capacities of inducing osteogenesis, promoting angiogenesis, antibacterial, immune regulation etc., as well as integration of postoperative repair and treatment. The authors review the biofunctionalisation of biomaterial surface and the inspired biological effects for bone repair, mainly including physical and chemical properties of material surface to regulate osteogenesis, and functional strategy of bone repair material surface.

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来源期刊
Biosurface and Biotribology
Biosurface and Biotribology Engineering-Mechanical Engineering
CiteScore
1.70
自引率
0.00%
发文量
27
审稿时长
11 weeks
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